Absence of unidirectionally propagating surface plasmon-polaritons at nonreciprocal metal-dielectric interfaces

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作者
Siddharth Buddhiraju
Yu Shi
Alex Song
Casey Wojcik
Momchil Minkov
Ian A. D. Williamson
Avik Dutt
Shanhui Fan
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[1] Stanford University,Ginzton Laboratory, Department of Electrical Engineering
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Nature Communications | / 11卷
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In the presence of an external magnetic field, the surface plasmon polariton that exists at the metal-dielectric interface is believed to support a unidirectional frequency range near the surface plasmon frequency, where the surface plasmon polariton propagates along one but not the opposite direction. Recent works have pointed to some of the paradoxical consequences of such a unidirectional range, including in particular the violation of the time-bandwidth product constraint that should otherwise apply in general in static systems. Here we show that such a unidirectional frequency range is nonphysical using both a general thermodynamic argument and a detailed calculation based on a nonlocal hydrodynamic Drude model for the metal permittivity. Our calculation reveals that the surface plasmon-polariton at metal-dielectric interfaces remains bidirectional for all frequencies.
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[1]  
Maier SA(2005)Plasmonics: localization and guiding of electromagnetic energy in metal/dielectric structures J. Appl. Phys. 98 10-193
[2]  
Atwater HA(2006)Plasmonics: merging photonics and electronics at nanoscale dimensions Science 311 189-204
[3]  
Ozbay E(2010)Plasmonics for extreme light concentration and manipulation Nat. Mater. 9 193-582
[4]  
Schuller JA(2013)What is - and what is not - an optical isolator Nat. Photo. 7 579-111
[5]  
Jalas D(2007)Extraordinary magneto-optical effects and transmission through metal-dielectric plasmonic systems Phys. Rev. Lett. 98 077401-578
[6]  
Belotelov V(2010)Active magneto-plasmonics in hybrid metal-ferromagnet structures Nat. Photonics 4 107-1165
[7]  
Doskolovich L(2013)Nonreciprocal plasmonics enables giant enhancement of thin-film faraday rotation Nat. Commun. 4 047401-962
[8]  
Zvezdin A(2013)Nonreciprocal rotating power flow within plasmonic nanostructures Phys. Rev. Lett. 111 573-1264
[9]  
Temnov VV(1962)Excitation of surface waves on a perfectly conducting screen covered with anisotropic plasma IRE Trans. Microw. Theory Tech. 10 125153-153
[10]  
Chin JY(2015)Chern invariants for continuous media Phys. Rev. B 92 1158-110