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		<summary type="html">&lt;p&gt;Bot: Automatski unos stranica&lt;/p&gt;
&lt;p&gt;&lt;b&gt;Nova stranica&lt;/b&gt;&lt;/p&gt;&lt;div&gt;&amp;lt;!--&amp;#039;&amp;#039;&amp;#039;Marin Soljačić&amp;#039;&amp;#039;&amp;#039;--&amp;gt;{{Znanstvenik&lt;br /&gt;
| ime                     = Marin Soljačić&lt;br /&gt;
| slika                   = Marin Soljacic.jpg&lt;br /&gt;
| slika_širina            = 150px&lt;br /&gt;
| naslov                  = &lt;br /&gt;
| datum_rođenja           = [[7. veljače]] [[1974.]]&lt;br /&gt;
| mjesto_rođenja          = [[Zagreb]]&lt;br /&gt;
| datum_smrti             = &lt;br /&gt;
| mjesto_smrti            = &lt;br /&gt;
| prebivalište            = [[Sjedinjene Američke Države|SAD]] &lt;br /&gt;
| državljanstvo           = &lt;br /&gt;
| narodnost               = &lt;br /&gt;
| etnicitet               =&lt;br /&gt;
| polje                   = [[Fizika]] i [[elektrotehnika]]&lt;br /&gt;
| radna_institucija       = [[Massachusetts Institute of Technology|MIT]] &lt;br /&gt;
| alma_mater              = [[Massachusetts Institute of Technology|MIT]], [[Sveučilište Princeton]]&lt;br /&gt;
| doktorski_mentor        = [[Mordechai Segev]]&lt;br /&gt;
| doktorski_studenti      = &lt;br /&gt;
| poznat_po               = [[WiTricity]], [[nelinearna optika]]&lt;br /&gt;
| autor_kratica_bot       = &lt;br /&gt;
| autor_kratica_zoo       = &lt;br /&gt;
| nagrade                 = [[Medalja Adolph Lomb]] (2005.), [[TR35]] (2006.)&lt;br /&gt;
| religija                = &lt;br /&gt;
| fusnote                 = &lt;br /&gt;
}}&lt;br /&gt;
&amp;#039;&amp;#039;&amp;#039;Marin Soljačić&amp;#039;&amp;#039;&amp;#039; ([[Zagreb]], [[7. veljače]] [[1974.]])  [[Hrvatska|hrvatski]] je [[znanstvenik]], profesor na odsjeku za [[Fizika|fiziku]] na najprestižnijem svjetskom tehničkom sveučilištu, [[Massachusetts Institute of Technology]] (MIT) u [[Massachusetts]]u ([[SAD]]). &lt;br /&gt;
&lt;br /&gt;
== Znanstvena karijera == &lt;br /&gt;
&lt;br /&gt;
Nakon mature u zagrebačkom [[MIOC]]-u (danas XV. gimnazija), od MIT-a dobiva stipendiju za studij na MIT-u, gdje je [[1996.]] diplomirao dva studija: fiziku i [[Elektrotehnika|elektrotehniku]]. [[1998.]] završava magisterij iz fizike na Sveučilištu Princeton, pod mentorstvom prof. [[Frank Wilczek|Franka Wilczeka]] (dobitnika [[Nobelova nagrada za fiziku|Nobelove nagrade za fiziku]] 2004.). [[2000.]] završava doktorat na Sveučilištu Princeton iz fizike, pod mentorstvom prof. Mordechaia Segeva. Iste godine započinje prestižni Pappalardo post-doktorski studij na MIT-u. [[2003.]] postaje vodeći istraživač na MIT-u, a [[2005.]] profesor fizike na MIT-u. &lt;br /&gt;
&lt;br /&gt;
Godine [[2006.]], predstavio je rad pod nazivom &amp;#039;[[Bežični prijenos energije|Bežični nezračeći prijenos energije]]&amp;#039; koji bi, uspije li se primijeniti i u praksi, u budućnosti mogao omogućiti mnogo korisnih primjena jer bi se omogućio bežični prijenos električne energije. &amp;lt;ref&amp;gt;http://arxiv.org/ftp/physics/papers/0611/0611063.pdf&amp;lt;/ref&amp;gt; &amp;lt;ref&amp;gt;http://www.mit.edu/~soljacic/AIP_press.pdf&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
Marin Soljačić stručnjak je za elektromagnetske fenomene, a posebice za [[nelinearna optika|nelinearnu optiku]] i [[nano-fotonika|nano-fotoniku]]. Koautor je mnoštva patenata, i znanstvenih radova u vodećim znanstvenim časopisima. Soljačić danas živi u Bostonu sa suprugom i sinom i vodi uspješnu karijeru.&lt;br /&gt;
&lt;br /&gt;
== Bežični nezračeći prijenos energije ==&lt;br /&gt;
{{glavni|WiTricity}}&lt;br /&gt;
&lt;br /&gt;
U časopisu &amp;quot;Science&amp;quot;&amp;lt;ref&amp;gt;http://www.sciencemag.org/cgi/content/abstract/1143254v1?maxtoshow=&amp;amp;HITS=10&amp;amp;hits=10&amp;amp;RESULTFORMAT=&amp;amp;fulltext=Soljacic&amp;amp;searchid=1&amp;amp;FIRSTINDEX=0&amp;amp;resourcetype=HWCIT&amp;lt;/ref&amp;gt; objavljeno je [[7. lipnja]] [[2007.]] godine, da je Marin Soljačić sa suradnicima u praksi izveo prvi&amp;lt;ref&amp;gt;“Wireless Non-Radiative Energy Transfer”, Marin Soljacic, Aristeidis Karalis, and J.D.Joannopoulos. 2006 AIP Industrial Physics Forum in San Francisco (CA), USA, 2006.&amp;lt;/ref&amp;gt; [[eksperiment]] bežičnog nezračećeg prijenosa energije, u kojem su iz strujne mreže pomoću dviju [[zavojnica]] udaljenih dva metra uspjeli upaliti žarulju od 60 [[vat|W]]. Zavojnice su ugođene na rezonantnu [[frekvencija|frekvenciju]] od 10 [[MHz]], a [[magnetsko polje]] kojim se energija prenosi samo slabo utječe na ljude, uređaje i objekte koji nisu u [[rezonancija|rezonanciji]]. &amp;lt;ref&amp;gt;http://www.mit.edu/~soljacic/MIT_WiTricity_Press_Release.pdf&amp;lt;/ref&amp;gt; &amp;lt;ref&amp;gt;http://www.sciencemag.org/cgi/rapidpdf/1143254v1.pdf?ijkey=94ff.Ay4jRMqU&amp;amp;keytype=ref&amp;amp;siteid=sci&amp;lt;/ref&amp;gt;. Prenijeto je 40% energije.&lt;br /&gt;
&lt;br /&gt;
== Nagrade ==&lt;br /&gt;
*U 2005. godini dobiva “Medalju Adolph Lomb” Američkog optičkog društva (Optical Society of America), koju dotično strukovno udruženje dodjeljuje svake godine jednom znanstveniku mlađem od 35 godina, za najbitnija otkrića u optici širom svijeta. &lt;br /&gt;
*U 2006. godini dobitnik je prestižne nagrade &amp;#039;&amp;#039;&amp;#039;TR35&amp;#039;&amp;#039;&amp;#039; koja se dodjeljuje najboljim inovatorima mlađim od 35 godina. Riječ je o nagradi koju dodjeljuje &amp;quot;Technology Review&amp;quot;, najstariji časopis za [[tehnologija|tehnologiju]] na svijetu.&lt;br /&gt;
*Magazin &amp;quot;The New York Times&amp;quot; je među 70 izvanrednih i genijalnih ideja koje su obilježile [[2007.]] godinu uvrstio i koncept bežičnog nezračećeg prijenosa energije &amp;quot;WiTricity&amp;quot;. &amp;lt;ref&amp;gt;http://inventorspot.com/articles/ideas_2007_9204&amp;lt;/ref&amp;gt;&lt;br /&gt;
*Dana 23. rujna [[2008.]] godine, Marin Soljačić uvršten je među 25 imena dobitnika nagrade MacArthur Fellowships za 2008. godinu.&amp;lt;ref&amp;gt;[http://www.macfound.org/site/c.lkLXJ8MQKrH/b.4196225/apps/s/content.asp?ct=5984635 Službene stranice MacArthur Fellowships zaklade]&amp;lt;/ref&amp;gt;&lt;br /&gt;
*Marin Soljačić jedan je od tri dobitnika „Blavatnik Awards for Young Scientists&amp;quot;, američke nagrade za najbolje znanstvenike mlađe od 42 godine.&amp;lt;ref&amp;gt;[http://www.jutarnji.hr/veliko-priznanje-marin-soljacic-dobio-prestiznu-nagradu-za-najboljeg-mladog-znanstvenika/1209589/ Jutarnji.hr članak]&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
== Izvori ==&lt;br /&gt;
{{izvori|2}}&lt;br /&gt;
&lt;br /&gt;
== Vanjske poveznice ==&lt;br /&gt;
* [http://www.mit.edu/~soljacic Službena stranica] {{jezikk|eng.|engleski}}&lt;br /&gt;
* [http://www.technologyreview.com/TR35/index.aspx?year=2006&amp;amp;channel=All Technology Review - TR35] {{jezikk|eng.|engleski}}&lt;br /&gt;
&lt;br /&gt;
&amp;lt;!--&lt;br /&gt;
/ORIGINALNI CV MARINA SOLJAČIĆA/&lt;br /&gt;
DATE AND PLACE OF BIRTH 		7th February 1974; Zagreb, Croatia&lt;br /&gt;
&lt;br /&gt;
POSITIONS	&lt;br /&gt;
•	Assistant Professor; physics department, MIT (2005-&lt;br /&gt;
•	Principal Research Scientist; Research Laboratory of Electronics, MIT (2003-2005)&lt;br /&gt;
•	Pappalardo Postdoctoral Fellow; Physics Department, MIT (2000-2003)&lt;br /&gt;
&lt;br /&gt;
EDUCATION&lt;br /&gt;
•	Princeton University, PhD in physics, (1996-2000):&lt;br /&gt;
-	PhD thesis topic in Non-linear Optics with Prof. Mordechai Segev: &amp;quot;Instabilities in non-linear wave systems in optics&amp;quot;&lt;br /&gt;
(academic year 1999/2000 I spent at Technion, Haifa, Israel)&lt;br /&gt;
-	MA thesis topic in Spin Glasses with Prof. Frank Wilczek: &amp;quot;A simple potential whose number of minima grows exponentially in the number of variables&amp;quot;&lt;br /&gt;
•	MIT, undergraduate education, (1992-1996):&lt;br /&gt;
-	BSE in Physics&lt;br /&gt;
-	BSE in Electrical Engineering&lt;br /&gt;
-	Undergraduate thesis topic in Inflationary Cosmology with Prof. Lisa Randall, and Prof. Alan Guth: &amp;quot;Super-natural inflation&amp;quot;&lt;br /&gt;
•	High-school: MIOC, Zagreb (Croatia); (1988-1992)&lt;br /&gt;
&lt;br /&gt;
ACHIEVEMENTS AND AWARDS&lt;br /&gt;
•	Chosen by Technology Review to be one of the “TR35”: top 35 innovators under the age of 35. (2006)&lt;br /&gt;
•	Awarded “Adolph Lomb Medal” of the Optical Society of America for 2005.&lt;br /&gt;
•	Award at “Young Scholars Competition” of “Amazing Light: Visions for Discovery Symposium” in 2005.&lt;br /&gt;
&lt;br /&gt;
PUBLICATIONS&lt;br /&gt;
1)	“Direct calculation of thermal emission for three-dimensionally periodic photonic crystal slabs”, David L. C. Chan, Marin Soljacic, and J. D. Joannopoulos. Phys. Rev. E, Vol.74, 036615, (2006). Also appeared as an Invited Paper in Virtual Journal of Nanoscale Science &amp;amp; Technology 2nd October 2006.&lt;br /&gt;
2)	“Thermal emission and design in 2D-periodic metallic photonic crystal slabs”, David L. C. Chan, Marin Soljacic, and J. D. Joannopoulos. Optics Express, Vol.14, 8785, (2006).&lt;br /&gt;
3)	“Thermal emission and design in one-dimensional periodic metallic photonic crystal slabs”, David L. C. Chan, Marin Soljacic, and J. D. Joannopoulos. Phys. Rev. E, Vol.74, 016609, (2006).&lt;br /&gt;
4)	“Comment on &amp;quot;Explanation of the Inverse Doppler Effect Observed in Nonlinear Transmission Lines&amp;quot;”, Evan Reed, Marin Soljacic, J.D.Joannopoulos, Technical Comment in Phys. Rev. Lett. Vol.96, 069402, (2006).&lt;br /&gt;
5)	&amp;quot;Achieving centimetre scale super collimation in a large area 2D photonic crystal&amp;quot; Peter T. Rakich, Marcus S. Dahlem, Sheila Tandon, Mihai Ibanescu, Marin Soljacic, Gale S. Petrich, John D. Joannopoulos, Leslie A. Kolodziejski and Erich P. Ippen. Nature Materials, Vol.5, p.93 (cover page), (2006).&lt;br /&gt;
6)	“Coherent optical photons from shock waves in crystals” Evan Reed, Marin Soljacic, Richard Gee, and J.D.Joannopoulos. Phys. Rev. Lett., Vol.96, 013904, (2006).&lt;br /&gt;
7)	“Reversed and anomalous Doppler effects in photonic crystals and other time-dependent periodic media” Evan Reed, Marin Soljacic, Mihai Ibanescu, and J.D.Joannopoulos. Invited paper in Journal of Computer-Aided Materials Design, Vol. 12, p.1, (2005).&lt;br /&gt;
8)	&amp;quot;Surface-Plasmon-assisted guiding of broadband slow and subwavelength light in air&amp;quot; Aristeidis Karalis, E.Lidorikis, Mihai Ibanescu, J.D.Joannopoulos, and Marin Soljacic. Phys. Rev. Lett. Vol.95, 063901, (2005).&lt;br /&gt;
9)	“Roughness losses and volume-current methods in photonic-crystal waveguides” Steven G. Johnson, M.L.Povinelli, Marin Soljacic, Aristeidis Karalis, S.Jacobs, and J.D.Joannopoulos. Invited paper in Applied Physics B, Vol.81, p.283, (2005).&lt;br /&gt;
10)	“The Superprism Effect using Large Area 2D-Periodic Photonic Crystal Slabs” S.N.Tandon, Marin Soljacic, G.S.Petrich, J.D.Joannopoulos and L.A.Kolodziejski. Photonics and Nanostructures – Fundamentals and Applications, Vol.3, p.10, (2005).&lt;br /&gt;
11)	 “Ultra Low-Power All-Optical Switching” Marin Soljacic, Elefterios Lidorikis, J.D.Joannopoulos, and Lene Vestergaard Hau. Appl. Phys. Lett., Vol.86, p.171101, (2005). Also appeared as an Invited Paper in Virtual Journal of Nanoscale Science &amp;amp; Technology 2nd May 2005, and as an Invited Paper in Virtual Journal of Ultrafast Science May 2005.&lt;br /&gt;
12)	“Enhancement of microcavity lifetimes using highly dispersive materials” Marin Soljacic, Elefterios Lidorikis, Lene Vestergaard Hau, and J.D. Joannopoulos. Phys. Rev. E, Vol.71, 026602, (2005). Also appeared as an Invited Paper in Virtual Journal of Nanoscale Science &amp;amp; Technology 21st February 2005.&lt;br /&gt;
13)	&amp;quot;Microcavities with highly dispersive materials&amp;quot; Marin Soljacic, Elefterios Lidorikis, J.D.Joannopoulos, and Lene Vestergaard Hau. Invited article in IEEE LEOS Newsletter, Vol.18, No.5, p.12, October (2004).&lt;br /&gt;
14)	“Third order nonlinearities in Ge-As-Se-based glasses for telecommunications applications” Juliet T. Gopinath, Marin Soljacic, Erich P. Ippen, Vladimir N. Fuflyigin, Wesley A. King, and Max Shurgalin. Journal of Applied Physics, Vol.96, p.6931, (2004). Also appeared as an Invited Paper in Virtual Journal of Ultrafast Science December 2004.&lt;br /&gt;
15)	&amp;quot;Comment on &amp;quot;Observation of the Inverse Doppler Effect&amp;quot;&amp;quot; Evan Reed, Marin Soljacic, Mihai Ibanescu, and J.D.Joannopoulos. Technical Comment in Science, Vol.305, p.778b, (2004).&lt;br /&gt;
16)	&amp;quot;Optical Bistability and Cutoff Solitons in Photonic Bandgap Fibers&amp;quot; Marin Soljacic, Elefterios Lidorikis, Mihai Ibanescu, Steven G. Johnson, J.D.Joannopoulos, and Yoel Fink. Invited paper in Optics Express, Vol.12, No.8, p.1518, (2004).&lt;br /&gt;
17)	“Enhancement of non-linear effects using photonic crystals” Marin Soljacic, and J.D. Joannopoulos. Invited review article in Nature Materials, Vol.3, p.211, (2004).&lt;br /&gt;
18)	&amp;quot;Effect of a photonic band gap on scattering from waveguide disorder&amp;quot; M. L. Povinelli, Steven G. Johnson, Elefterios Lidorikis, J. D. Joannopoulos, and Marin Soljacic. Appl. Phys. Lett., Vol.84, p.3639, (2004). Also appeared as an Invited Paper in Virtual Journal of Nanoscale Science &amp;amp; Technology 10th May 2004.&lt;br /&gt;
19)	&amp;quot;Cutoff solitons in axially uniform systems&amp;quot; Elefterios Lidorikis, Marin Soljacic, Mihai Ibanescu, Yoel Fink, and J.D.Joannopoulos. Optics Letters, Vol.29, p.851, (2004).&lt;br /&gt;
20)	&amp;quot;Superprism effect based on phase velocities&amp;quot; Chiyan Luo, Marin Soljacic, and J.D.Joannopoulos. Optics Letters, Vol.29, p.745, (2004).&lt;br /&gt;
21)	&amp;quot;Polychromatic partially spatially inoherent solitons in non-instantaneous Kerr nonlinear medium&amp;quot; Hrvoje Buljan, Tal Schwartz, Mordechai Segev, Marin Soljacic, and Demetrios Christodoulides. JOSA B, Vol.21, p.397, (2004).&lt;br /&gt;
22)	&amp;quot;Pattern formation in optical cavities with incoherent light&amp;quot; Tal Carmon, Hrvoje Buljan, Marin Soljacic, Mordechai Segev. Optics &amp;amp; Photonics News (Optics in 2003: special end-of-year issue), p.40, December (2003).&lt;br /&gt;
23)	&amp;quot;All-Optical Transistor Action With Bistable Switching in a Photonic Crystal Cross-Waveguide Geometry&amp;quot; Mehmet Fatih Yanik, Shanhui Fan, Marin Soljacic, and J.D.Joannopoulos. Optics Letters, Vol.28, p.2506, (2003).&lt;br /&gt;
24)	&amp;quot;Collisions of two solitons in an arbitrary number of coupled nonlinear Schrodinger equations&amp;quot; Marin Soljacic, Ken Steiglitz, Suzanne M. Sears, Mordechai Segev, Mariusz H. Jakubowski, and Richard Squier. Phys. Rev. Lett, Vol.90, 254102, (2003).&lt;br /&gt;
25)	&amp;quot;High-Contrast All-Optical Bistable Switching in Photonic Crystal Microcavities&amp;quot; Mehmet Fatih Yanik, Shanhui Fan, and Marin Soljacic. Appl. Phys. Lett., Vol.83, p.2739, (2003).&lt;br /&gt;
26)	&amp;quot;Color of shock waves in photonic crystals&amp;quot; Evan Reed, Marin Soljacic, and J.D.Joannopoulos. Phys. Rev. Lett. Vol.90, 203904, (2003). Also appeared as an Invited Paper in Virtual Journal of Nanoscale Science &amp;amp; Technology, 9th June 2003.&lt;br /&gt;
27)	&amp;quot;Reversed Doppler effect in photonic crystals&amp;quot; Evan Reed, Marin Soljacic, and J.D.Joannopoulos. Phys. Rev. Lett., Vol.91, 133901 (cover page), (2003). Also appeared as an Invited Paper in Virtual Journal of Nanoscale Science &amp;amp; Technology 6th October 2003.&lt;br /&gt;
28)	&amp;quot;Optical Bistability in Axially Modulated OmniGuide Fibers&amp;quot; Marin Soljacic, Mihai Ibanescu, Steven G. Johnson, J.D.Joannopoulos, and Yoel Fink. Optics Letters, Vol.28, p.516, (2003).&lt;br /&gt;
29)	&amp;quot;Non-linear Photonic Crystal Micro-Devices for Optical Integration&amp;quot; Marin Soljacic, Chiyan Luo, J.D.Joannopoulos, and Shanhui Fan. Optics Letters, Vol.28, p.637, (2003).&lt;br /&gt;
30)	&amp;quot;Analysis of Mode Structure in OmniGuide Fibers&amp;quot; Mihai Ibanescu, Steven G. Johnson, Marin Soljacic, J.D.Joannopoulos, Yoel Fink, Ori Weisberg, Torkel D. Engeness, Steven A. Jacobs, and M.Skorobogatiy. Phys. Rev. E, Vol.67, 046608, (2003).&lt;br /&gt;
31)	&amp;quot;Cavity pattern formation and cavity solitons with incoherent light&amp;quot; Hrvoje Buljan, Marin Soljacic, Tal Carmon, and Mordechai Segev. Phys. Rev. E, Vol.68, 016616, (2003).&lt;br /&gt;
32)	&amp;quot;White light solitons&amp;quot; Hrvoje Buljan, Mordechai Segev, Marin Soljacic, Nikolaos K. Efremidis, and Demetrios N. Christodoulides. Optics Letters, Vol.28, p.1239, (2003).&lt;br /&gt;
33)	&amp;quot;Incoherent white light solitons in logarithmically saturable noninstantaneous nonlinear media&amp;quot; Hrvoje Buljan, Antonio Siber, Marin Soljacic, Tal Schwartz, Mordechai Segev, and Demetrios Christodoulides. Phys. Rev. E., Vol.68, 036607, (2003).&lt;br /&gt;
34)	&amp;quot;Analysis of general geometric scaling perturbations in a transmitting waveguide: fundamental connection between polarization-mode dispersion and group-velocity dispersion&amp;quot; Maksim Skorobogatiy, Mihai Ibanescu, Steven G. Johnson, Ori Weisberg, Torkel D. Engeness, Marin Soljacic, Steven A. Jacobs, and Yoel Fink. JOSA B Vol.19, p.2867, (2002).&lt;br /&gt;
35)	&amp;quot;Optimal bistable switching in nonlinear photonic crystals&amp;quot; Marin Soljacic, Mihai Ibanescu, Steven G. Johnson, Yoel Fink, and J.D.Joannopoulos. Phys. Rev. E Rapid Comm. Vol.66, 055601(R), (2002). Also appeared as an Invited Paper in Virtual Journal of Nanoscale Science &amp;amp; Technology, 25th November 2002.&lt;br /&gt;
36)	&amp;quot;Pattern formation in a cavity longer than the coherence length of the light in it&amp;quot; Tal Carmon, Marin Soljacic, and Mordechai Segev. Phys. Rev. Lett. Vol.89, 183902, (2002).&lt;br /&gt;
37)	&amp;quot;Photonic-crystal slow-light enhancement of nonlinear phase sensitivity&amp;quot; Marin Soljacic, S.Johnson, S.Fan, M.Ibanescu, E.Ippen, and J.D.Joannopoulos. Invited Paper in JOSA B Vol.19, p.2052, (2002). Also appeared as an Invited Paper in Virtual Journal of Nanoscale Science &amp;amp; Technology, 16th September 2002.&lt;br /&gt;
38)	&amp;quot;Propagation of incoherent &amp;quot;white&amp;quot; light and modulation instability in noninstantaneous nonlinear media&amp;quot; Hrvoje Buljan, Antonio Siber, Marin Soljacic, and Mordechai Segev. Phys. Rev. E Rapid Comm. Vol.66, 035601(R), (2002).&lt;br /&gt;
39)	&amp;quot;(1+1)-Dimensional modulation instability of spatially incoherent light&amp;quot; Detlef Kip, Marin Soljacic, Mordechai Segev, Suzanne Sears, and Demetrios N. Christodoulides. JOSA B Vol.19, p.502, (2002).&lt;br /&gt;
40)	&amp;quot;Pattern formation via symmetry breaking in nonlinear weakly correlated systems&amp;quot; Suzanne M. Sears, Marin Soljacic, Demetrios N. Christodoulides, and Mordechai Segev. Phys. Rev. E Vol.65, 036620, (2002).&lt;br /&gt;
41)	&amp;quot;Integer and Fractional Angular Momentum Borne on Self-Trapped Necklace-ring Beams&amp;quot; Marin Soljacic, and Mordechai Segev. Phys. Rev. Lett. Vol.86, p.420, (2001).&lt;br /&gt;
42)	&amp;quot;Transverse instability of incoherent solitons in Kerr media&amp;quot; Juan P. Torres, Charalambos Anastassiou, Mordechai Segev, Marin Soljacic, and Demetrios N. Christodoulides. Phys. Rev. E Rapid Comm. Vol.65, 015601(R), (2001).&lt;br /&gt;
43)	&amp;quot;Interactions between two-dimensional composite vector solitons carrying topological charges&amp;quot; Ziad H. Musslimani, Marin Soljacic, Mordechai Segev, and Demetrios N. Christodoulides Phys. Rev. E Vol.63, 066608, (2001).&lt;br /&gt;
44)	&amp;quot;Delayed-Action Interaction and Spin-Orbit Coupling between Solitions&amp;quot; Ziad H. Musslimani, Marin Soljacic, Mordechai Segev, and Demetrios N. Christodoulides. Phys. Rev. Lett. Vol.86, No.5, p.799, (2001).&lt;br /&gt;
45)	&amp;quot;Low-loss asymptotically single-mode propagation in large-core OmniGuide fibers&amp;quot; Steven G. Johnson, Mihai Ibanescu, M. Skorobogatiy, Ori Weisberg, Torkel D. Engeness, Marin Soljacic, Steven A. Jacobs, J. D. Joannopoulos and Yoel Fink. Optics Express Vol.9, No.13, p.748, (2001).&lt;br /&gt;
46)	&amp;quot;Modulation Instability and Pattern Formation in Spatially Incoherent Light Beams&amp;quot; Detlef Kip, Marin Soljacic, Mordechai Segev, Evgenia Eugenieva, Demetrios N. Christodoulides. Science Vol.290, p.495, (2000).&lt;br /&gt;
47)	&amp;quot;Modulation instability of spatially-incoherent light beams and pattern formation in incoherent wave systems&amp;quot; Detlef Kip, Marin Soljacic, Mordechai Segev, Evgenia Eugenieva, Demetrios N. Christodoulides. Optics &amp;amp; Photonics News (Optics in 2000: special end-of-year issue), p.34, December (2000).&lt;br /&gt;
48)	&amp;quot;Eliminating the Transverse Instabilities of Kerr Solitons&amp;quot; Charalambos Anastassiou, Marin Soljacic, Mordechai Segev, Eugenia D. Eugenieva, Demetrios N. Christodoulides, Detlef Kip, Ziad H. Musslimani, and Juan P. Torres. Phys. Rev. Lett. Vol.85, No.23, p.4888, (2000).&lt;br /&gt;
49)	&amp;quot;Bright Spatial Solitons on a Partially Incoherent Background&amp;quot; Tamer H. Coskun, Demetrios N. Christodoulides, Young-Rae Kim and Zhigang Chen, Marin Soljacic, and Mordechai Segev. Phys. Rev. Lett. Vol.84, No.11, p.2374, (2000). &lt;br /&gt;
50)	&amp;quot;Modulation Instability of Incoherent Beams in Non-Instantaneous Nonlinear Media&amp;quot; Marin Soljacic, Mordechai Segev, Tamer Coskun, Demetrios N. Christodoulides, and Ashvin Vishwanath. Phys. Rev. Lett. Vol.84, No.3, p.467, (2000).&lt;br /&gt;
51)	&amp;quot;Minimal Potential with Very Many Minima&amp;quot; Marin Soljacic, and Frank Wilczek. Phys. Rev. Lett. Vol.84, No.11, p.2285, (2000).&lt;br /&gt;
52)	&amp;quot;Composite Multi-Hump Vector Solitons Carrying Topological Charge&amp;quot; Ziad Musslimani, Mordechai Segev, Demetrios Christodoulides, and Marin Soljacic. Phys. Rev. Lett. Vol.84, No.6, p.1164, (2000). &lt;br /&gt;
53)	&amp;quot;Self-trapping of Electromagnetic Beams in Vacuum Supported by QED Nonlinear Effects&amp;quot; Marin Soljacic, and Mordechai Segev. Phys. Rev. A, Vol.62, 043817, (2000). &lt;br /&gt;
54)	&amp;quot;Self-Trapping of Necklace-Ring Beams in Self-Focusing Kerr Media&amp;quot; Marin Soljacic, and Mordechai Segev. Phys. Rev. E, Vol.62, p.2810, (2000).&lt;br /&gt;
55)	&amp;quot;Cantor Set Fractals From Solitons&amp;quot; Suzanne Sears, Marin Soljacic, Mordechai Segev, Dmitriy Krylov, and Keren Bergman. Phys. Rev. Lett. Vol.84, p.1902, (2000).&lt;br /&gt;
56)	&amp;quot;Self-Similarity and Fractals in Soliton-Supporting Systems&amp;quot; Marin Soljacic, Mordechai Segev, and Curtis R. Menyuk. Phys. Rev. E Rapid Comm. Vol.61, p.1048, (2000).&lt;br /&gt;
57)	&amp;quot;Self-Similarity and Fractals driven by Soliton Dynamics&amp;quot; Marin Soljacic, Suzanne Sears, Mordechai Segev, Dmitry Krylov, and Keren Bergman. Invited overview article in Photonics Science News, Volume 5, Issue 1, (1999).&lt;br /&gt;
58)	&amp;quot;Self-Trapping of Necklace Beams in Self-Focusing Kerr Media&amp;quot; Marin Soljacic, Suzanne Sears, and Mordechai Segev. Phys. Rev. Lett. Vol.81, No.22, p.4851, (1998).&lt;br /&gt;
59)	&amp;quot;Supernatural Inflation: Inflation from Supersymmetry with No (Very) Small Parameters&amp;quot; Lisa Randall, Marin Soljacic, and Alan H. Guth. Nuclear Physics, B472, p.377-408, (1996).&lt;br /&gt;
&lt;br /&gt;
BOOK SECTIONS&lt;br /&gt;
1)	Section &amp;quot;Integer and Fractional Angular Momentum Borne on Self-Trapped Necklace-ring Beams&amp;quot; by Marin Soljacic, and Mordechai Segev in: Optical Angular Momentum. Editors: L. Allen, Miles J. Padgett, and S. M. Barnett. (Institute of Physics Pub, March 2003).&lt;br /&gt;
2)	Essay “Photonic Crystals” by Steven G. Johnson, Marin Soljacic, and J.D. Joannopoulos in: Encyclopedia of Nonlinear Science. Editor: Alwyn Scott. (Routledge, December 2004).&lt;br /&gt;
&lt;br /&gt;
SELECTED PRESS COVERAGE&lt;br /&gt;
1)	&amp;quot;Shock-produced coherent terahertz light,&amp;quot; P. Schewe, Physics Today, p. 9, March (2006).&lt;br /&gt;
2)	&amp;quot;Shocking prediction for light source,&amp;quot; C. Sealy, Materials Today 9, 19, March (2006).&lt;br /&gt;
3)	&amp;quot;Shocked crystals may emit coherent T-Rays,&amp;quot; Photonics Spectra, p. 20, February (2006).&lt;br /&gt;
4)	&amp;quot;Get laser-like beams from salt,&amp;quot; P. Ball, Nature, January 18 (2006).&lt;br /&gt;
5)	&amp;quot;Shock-produced coherent light,&amp;quot; P. Schewe and B. Stein, Physics News Update 761, Jan. 11 (2006).&lt;br /&gt;
6)	&amp;quot;First new coherent light source in 50 years disovered by LLNL, MIT researchers,&amp;quot; Photonics, January 17 (2006).&lt;br /&gt;
7)	&amp;quot;Shocks produce laser-like light,&amp;quot; Technology Research News, December 12, (2005).&lt;br /&gt;
8)	&amp;quot;A New Kind of Nanophotonic Waveguide,&amp;quot; Phil Schewe, Physics Today, p.9, October (2005).&lt;br /&gt;
9)	&amp;quot;A New Kind of Nanophotonic Waveguide,&amp;quot; Phil Schewe and Ben Stein, Physics News Update, 740, August 5, (2005).&lt;br /&gt;
10)	“Switch Promises Optical Chips,” Eric Smalley, Technology Research News, November 19/26, (2003).&lt;br /&gt;
11)	&amp;quot;Optical alchemy,&amp;quot; B. Kroener, Wired Magazine, October (2003).&lt;br /&gt;
12)	&amp;quot;Band on the run: Light meets shock fronts in virtual photonic crystals,&amp;quot; S. Blau, Physics Today, p.17, August (2003).&lt;br /&gt;
13)	&amp;quot;Shocked photonic crystals tune light,&amp;quot; D.S. Burgess, Photonics Spectra, p.108, July (2003).&lt;br /&gt;
14)	&amp;quot;A shocking transformation,&amp;quot; Scientific American, July, (2003).&lt;br /&gt;
15)	&amp;quot;Light gets a useful shock,&amp;quot; P. Ball, Nature, Vol.423, p. 598 (2003).&lt;br /&gt;
16)	&amp;quot;Alchemy with light,&amp;quot; C. Choi, New Scientist, p.14, May 24, 2003.&lt;br /&gt;
17)	&amp;quot;Changing light at will,&amp;quot; Claire Bowles, The Washington Times, May 23, (2003). &lt;br /&gt;
18)	&amp;quot;Shocking color effects,&amp;quot; P.F. Schewe, B. Stein, J. Riordon, Physics News Update, 634, April 23, (2003).&lt;br /&gt;
19)	&amp;quot;Crystal Bash: Shocking changes to light&amp;#039;s properties,&amp;quot; P. Weiss, Science News, Vol.163, p. 276 (2003).&lt;br /&gt;
&lt;br /&gt;
PATENTS&lt;br /&gt;
1)	&amp;quot;Coherent generation, Conversion, and Modulation of Electromagnetic Radiation Using Shock Waves or Solitons Propagating Through Polaritonic or Excitonic Materials&amp;quot; Evan J. Reed, Marin Soljacic, and J.D. Joannopoulos. U.S. patent number 7,116,458, issued in October 2006.&lt;br /&gt;
2)	&amp;quot;Using Electro-Magnetically Induced Transparency in Photonic Crystal Cavities to Obtain Huge Non-linear Effects&amp;quot; Marin Soljacic, Lene Vestergaard Hau, and J.D. Joannopoulos. U.S. patent number 7,031,585, issued in April 2006.&lt;br /&gt;
3)	&amp;quot;Using Optical Solitons to Increase Figure-Of-Merit of Laser Beam Deflection Devices&amp;quot; Marin Soljacic, Mordechai Segev, Chiyan Luo, and J.D. Joannopoulos. U.S. patent number 7,027,681, issued in April 2006.&lt;br /&gt;
4)	&amp;quot;Shock wave modulation and control of electromagnetic radiation [nonlinear mechanism]&amp;quot; Evan J. Reed, Marin Soljacic, Steven G. Johnson, Maksim Skorobogatiy, and J.D.Joannopoulos. U.S. patent number 7,079,308, issued in July 2006.&lt;br /&gt;
5)	&amp;quot;Photonic Crystal Waveguides Having Tailored Dispersion Profiles&amp;quot; Torkel Engeness, Steven Johnson, Mihai Ibanescu, Yoel Fink, Ori Weisberg, J.D.Joannopolous, Maksim Skorobogatiy, Marin Soljacic, and Steven A. Jacobs. U.S. patent number 6,895,154, issued in May 2005.&lt;br /&gt;
6)	&amp;quot;Mach-Zehnder Interferometer Using Photonic Bandgap Crystals&amp;quot; Marin Soljacic, Shanhui Fan, Mihai Ibanescu, Steven G. Johnson, and J.D.Joannopoulos. U.S. patent number 6,917,431, issued in July 2005.&lt;br /&gt;
7)	&amp;quot;High Index Contrast Fiber Waveguides and Applications [devices based on axial modulation and high Q]&amp;quot; Marin Soljacic, Mihai Ibanescu, Torkel Engeness, Maksim Skorobogatiy, Steven Johnson, Ori Weisberg, Yoel Fink, Rokan U. Ahmad, Lori Pressman, Wesley A. King, Emilia Anderson, and J.D.Joannopoulos. U.S. patent number 6,898,359, issued in May 2005.&lt;br /&gt;
8)	&amp;quot;Shock wave modulation and control of electromagnetic radiation [shock-wave mechanism]&amp;quot; Evan J. Reed, Marin Soljacic, Steven G. Johnson, Maksim Skorobogatiy, and J.D.Joannopoulos. U.S. patent number 6,809,856, issued in October 2004.&lt;br /&gt;
9)	&amp;quot;High Index Contrast Fiber Waveguides and Applications[codrawing rules]&amp;quot; Wesley King, Emilia Anderson, Marin Soljacic, Mihai Ibanescu, Torkel Engeness, Maksim Skorobogatiy, Steven G. Johnson, Ori Weisberg, Yoel Fink, Rokan U. Ahmad Lori Pressman. U.S. patent number 6,801,698, issued in October 2004.&lt;br /&gt;
10)	&amp;quot;High Index Contrast Fiber Waveguides and Applications [TIR devices]&amp;quot; Rokan U. Ahmad, Marin Soljacic, Mihai Ibanescu, Torkel Engeness, Maksim Skorobogatiy, Steven G. Johnson, Ori Weisberg, Yoel Fink, Lori Pressman, Wesley A. King, Emilia Anderson, and J.D.Joannopoulos. U.S. patent number 6,788,864, issued in September 2004.&lt;br /&gt;
11)	“Low-loss photonic crystal waveguide having large core radius [continuation of U.S. patent 6,625,364]” Steven G. Johnson, Mihai Ibanescu, Ori Weisberg, Yoel Fink, J.D.Joannopolous, Maksim Skorobogatiy, Torkel Engeness, Marin Soljacic, and Steven A. Jacobs. U.S. patent number 7,072,553, issued in July 2006.&lt;br /&gt;
12)	“Low-loss photonic crystal waveguide having large core radius” Steven G. Johnson, Mihai Ibanescu, Ori Weisberg, Yoel Fink, J.D.Joannopolous, Maksim Skorobogatiy, Torkel Engeness, Marin Soljacic, and Steven A. Jacobs. U.S. patent number 6,625,364, issued in September 2003.&lt;br /&gt;
&lt;br /&gt;
INVITED TALKS (AT CONFERENCES)&lt;br /&gt;
1)	“Wireless Non-Radiative Energy Transfer”, Marin Soljacic, Aristeidis Karalis, and J.D.Joannopoulos. 2006 AIP Industrial Physics Forum in San Francisco (CA), USA, 2006.&lt;br /&gt;
2)	Tutorial: “Enhancement of NLO Effects in Photonic Crystals”, Marin Soljacic. OSA Annual Meeting / Frontiers in Optics in Rochester (NY), USA, 2006.&lt;br /&gt;
3)	“Frontiers in extreme conditions: Theory and simulation of shock-wave compression of condensed matter”, Evan J. Reed, Marin Soljacic, Laurence E. Fried, J.D.Joannopoulos, Christopher J. Mundy, Richard Gee, and Kurt Glaesemann. Emerging Themes in Physics 2006 in Austin (TX), USA, 2006.&lt;br /&gt;
4)	“Prediction of coherent optical photons from shock waves in crystals”, Evan Reed, Marin Soljacic, Richard Gee, and J.D.Joannopoulos. IEEE LEOS Annual Meeting 2006 in Montreal, Canada, 2006.&lt;br /&gt;
5)	“Plasmonic Dispersion and Thermal Emission”, Marin Soljacic, Aristeidis Karalis, David Chan, Ivan Celanovic, Mihai Ibanescu, Elefterios Lidorikis, and John Joannopoulos. Gordon Research Conference on Plasmonics in Keene (NH), USA, 2006. &lt;br /&gt;
6)	&amp;quot;Nonlinear Optics at Very Low Power Levels&amp;quot;, Marin Soljacic, A. Karalis, E. Lidorikis, M. Ibanescu, L. V. Hau, and J. D. Joannopoulos. CLEO/QELS 2006 in Long Beach (CA), USA, 2006.&lt;br /&gt;
7)	“Towards Nano-Scales in Photonics”, Marin Soljacic, Aristeidis Karalis, Elefterios Lidorikis, Mihai Ibanescu, Lene V. Hau, and J. D. Joannopoulos. PIERS 2006 in Cambridge (MA), USA, 2006.&lt;br /&gt;
8)	&amp;quot;Reversed and anomalous Doppler effects in shocked periodic media&amp;quot;, Evan Reed, Marin Soljacic, Mihai Ibanescu, and J.D.Joannopoulos. ICCMSE 2005 in Loutraki (Korinthos), Greece, 2005.&lt;br /&gt;
9)	&amp;quot;EIT in microcavities: towards ultra-low power optical nonlinearities&amp;quot;, Marin Soljacic, Elefterios Lidorikis, Lene Vestergaard Hau, and J.D.Joannopoulos. OSA Annual Meeting / Frontiers in Optics in Tucson (AZ), USA, 2005.&lt;br /&gt;
10)	Tutorial: &amp;quot;Novel devices based on photonic band gap microcavities&amp;quot;, Marin Soljacic. ECOC in Glasgow, UK, 2005.&lt;br /&gt;
11)	&amp;quot;New windows of opportunity for all-optical information processing: spatial solitons, EIT in microcavities, etc.&amp;quot; Marin Soljacic, Elefterios Lidorikis, J.D. Joannopoulos, Lene Vestergaard Hau, Mordechai Segev, Ken Steiglitz, and Charalambos Anastasiou. SPIE Photonics West in San Jose (CA), USA, 2005.&lt;br /&gt;
12)	&amp;quot;Anomalous Doppler effects in shocked and other time-dependent periodic media&amp;quot;, Evan Reed, Marin Soljacic, Mihai Ibanescu, and J.D.Joannopoulos. SPIE Photonics West in San Jose (CA), USA, 2005.&lt;br /&gt;
13)	&amp;quot;Electro-magnetically Induced Transparency in Micro-Cavities&amp;quot;, Marin Soljacic, Elefterios Lidorikis, Lene Vestergaard Hau, and J.D.Joannopoulos. SPIE 49th Annual Meeting in Denver (CO), USA, 2004.&lt;br /&gt;
14)	&amp;quot;Microcavities with Highly Dispersive Materials&amp;quot;, Marin Soljacic, Elefterios Lidorikis, Lene Vestergaard Hau, and J.D.Joannopoulos. IEEE LEOS Summer Topicals in San Diego (CA), USA, 2004.&lt;br /&gt;
15)	&amp;quot;The color of shock waves in photonic crystals&amp;quot;, Evan Reed, Marin Soljacic, and J.D.Joannopoulos. APS DCOMP in Montreal, Canada, 2004.&lt;br /&gt;
16)	&amp;quot;The color of shock waves in photonic crystals&amp;quot;, Evan Reed, Marin Soljacic, and J.D.Joannopoulos. SPIE Opto-electronics 2004  in San Jose (CA), USA, 2004.&lt;br /&gt;
17)	&amp;quot;Bistability in Photonic Crystals and Photonic Crystal Fibers&amp;quot; Marin Soljacic, Elefterios Lidorikis, M.Ibanescu, S. G. Johnson, S. Fan, Chiyan Luo, Yoel Fink, J. D. Joannopoulos. PIERS 2003 in Honolulu (HI), USA, 2003.&lt;br /&gt;
18)	&amp;quot;The color of shock waves in photonic crystals&amp;quot;, Evan Reed, Marin Soljacic, and J.D.Joannopoulos. APS Shock Compression of Condensed Matter in Portland (OR), USA, 2003.&lt;br /&gt;
19)	&amp;quot;Modeling of nano-photonics&amp;quot; Elefterios Lidorikis, Michelle L. Povinelli, Steven G. Johnson, Marin Soljacic, Mihai Ibanescu, Yoel Fink, and J. D. Joannopoulos. SPIE 48th Annual Meeting in San Diego (CA), USA, 2003.&lt;br /&gt;
20)	&amp;quot;Novel optical phenomena with photonic crystals&amp;quot;, Chiyan Luo, Steven Johnson, Marin Soljacic, J.D.Joannopoulos, and J.B. Pendry. SPIE 48th Annual Meeting in San Diego (CA), USA, 2003.&lt;br /&gt;
21)	&amp;quot;Optical Bistability in Nonlinear Photonic Crystal Systems&amp;quot; Marin Soljacic, Elefterios Lidorikis, M.Ibanescu, S. G. Johnson, S. Fan, Chiyan Luo, Yoel Fink, J. D. Joannopoulos. IEEE LEOS Summer Topicals in Vancouver, Canada, 2003.&lt;br /&gt;
22)	&amp;quot;All-optical switching using optical bistability in non-linear photonic crystals&amp;quot; Marin Soljacic, M.Ibanescu, S. G. Johnson, S. Fan, Chiyan Luo, Yoel Fink, J. D. Joannopoulos. SPIE Photonics West in San Jose (CA), USA, 2003.&lt;br /&gt;
23)	&amp;quot;All-optical switching and bistability in photonic crystals&amp;quot; Marin Soljacic, M.Ibanescu, S. G. Johnson, S. Fan, Chiyan Luo, Yoel Fink, J. D. Joannopoulos. PECS-IV in Los Angeles (CA), USA, 2002.&lt;br /&gt;
24)	&amp;quot;Enabling anomalous light behavior with photonic crystals&amp;quot;, J. D. Joannopoulos, Chiyan Luo, Evan Reed, Marin Soljacic, Mihai Ibanescu, Steven Johnson, J.B. Pendry. PECS-IV in Los Angeles (CA), USA, 2002.&lt;br /&gt;
25)	&amp;quot;All-optical switching and optical bistability in non-linear photonic crystals&amp;quot; Marin Soljacic, M.Ibanescu, S. G. Johnson, S. Fan, Chiyan Luo, Yoel Fink, J. D. Joannopoulos. OSA Annual Meeting / LS-XVIII in Orlando (FL), USA, 2002.&lt;br /&gt;
26)	&amp;quot;Bistability in Photonic Crystal Defects&amp;quot; Marin Soljacic, M.Ibanescu, S. G. Johnson, S. Fan, Chiyan Luo, Yoel Fink, J. D. Joannopoulos. NLGW 2002 in Stresa, Italy, 2002.&lt;br /&gt;
27)	&amp;quot;Enhancement of phase sensitivity by exploring slow light in photonic crystals&amp;quot; Marin Soljacic, E.Lidorikis, S. G. Johnson, S. Fan, M. Ibanescu, E. P. Ippen, H.A.Haus, J. D. Joannopoulos. SPIE ITCom2002 in Boston (MA), USA, 2002.&lt;br /&gt;
28)	&amp;quot;Breaking the glass ceiling: hollow OmniGuide fibers&amp;quot; Steven G. Johnson, Mihai Ibanescu, Maksim Skorobogatiy, Ori Weisberg, Torkel Engeness, Marin Soljacic, Steven Jacobs, J.D.Joannopoulos, and Yoel Fink. ESPC: European Symposium on Photonic Crystals in Warsaw, Poland, 2002.&lt;br /&gt;
29)	&amp;quot;Breaking the glass ceiling: hollow OmniGuide fibers&amp;quot; Steven G. Johnson, Mihai Ibanescu, Maksim Skorobogatiy, Ori Weisberg, Torkel Engeness, Marin Soljacic, Steven Jacobs, J.D.Joannopoulos, and Yoel Fink. SPIE Opto-electronics 2002 in San Jose (CA), USA, 2002.&lt;br /&gt;
30)	&amp;quot;Pattern formation and clustering of solitons in nonlinear weakly-correlated wave-systems&amp;quot; Mordechai Segev, Demetrios N. Christodoulides, Marin Soljacic, Zhigang Chen, Detlef Kip, and Suzanne Sears. NLO 2002 in Maui (HI), USA, 2002.&lt;br /&gt;
31)	&amp;quot;Pattern formation and clustering of solitons in nonlinear weakly-correlated wave-systems&amp;quot; Mordechai Segev, Demetrios N. Christodoulides, Marin Soljacic, Zhigang Chen, Detlef Kip, and Suzanne Sears. CLEO/QELS in San Francisco (CA), USA, 2002.&lt;br /&gt;
32)	&amp;quot;Incoherent Modulation Instability: Pattern formation in weakly-correlated nonlinear wave systems&amp;quot; Mordechai Segev, Marin Soljacic, Detlef Kip, Zhigang Chen, Suzanne Sears, Eugenia Eugenieva, Demetrios N. Christodoulides. OSA Annual Meeting / LS-XVII in Long Beach (CA), USA 2001.&lt;br /&gt;
&lt;br /&gt;
--&amp;gt;&lt;br /&gt;
&lt;br /&gt;
{{GLAVNIRASPORED:Soljačić, Marin}}&lt;br /&gt;
[[Kategorija:Hrvatski fizičari]]&lt;br /&gt;
[[Kategorija:Hrvatski izumitelji]]&lt;/div&gt;</summary>
		<author><name>WikiSysop</name></author>
	</entry>
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