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Wave reflection in dielectric media obeying spatial Kramers-Kronig relations

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arxiv 1510.01491 v1 pith:AEHBIWGG submitted 2015-10-06 physics.optics quant-ph

Wave reflection in dielectric media obeying spatial Kramers-Kronig relations

classification physics.optics quant-ph
keywords dielectricmediaimaginarykramers-kronigone-waypermittivitypropertyreflection
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In a recent work, S.A.R. Horsley and coworkers [Nature Photon 9, 436-439 (2015)] showed rather interestingly that planar dielectric media, for which the real and imaginary parts of the dielectric permittivity are related by spatial Kramers-Kronig (KK) relations, are one-way reflectionless, whatever the angle of incidence. Such a fascinating property, besides of extending our comprehension of the fundamental phenomenon of reflection, may offer new ways for the design of antireflection surfaces and thin materials with efficient light absorption. However, KK dielectric media are generally described by slowly-decaying complex permittivity profiles which may introduce some subtle issues in the study of the scattering problem. Here we provide a condition on the imaginary part of the dielectric profile that ensures the existence of proper scattering states and present a proof of the one-way reflectionless property in KK dielectric media which is free from loophole. Finally, we show that instabilities might arise at the interface of KK dielectric media when the medium is not purely dissipative.

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