2003Physical Review LettersRequires access

Total Negative Refraction in Real Crystals for Ballistic Electrons and Light

Yong Zhang, B. Fluegel, A. Mascarenhas

Open publisher page 174 citations

Abstract

It is found that there exists a category of material interfaces, readily available, that not only can provide total refraction (i.e., zero reflection) but can also give rise to amphoteric refraction (i.e., both positive and negative refraction) for electromagnetic waves in any frequency domain as well as for ballistic electron waves. These two unusual phenomena are demonstrated experimentally for the propagation of light through such an interface.

About this research paper

What this paper is about

It is found that there exists a category of material interfaces, readily available, that not only can provide total refraction (i.e., zero reflection) but can also give rise to amphoteric refraction (i.e., both positive and negative refraction) for electromagnetic waves in any frequency domain as well as for ballistic electron waves. These two unusual phenomena are demonstrated experimentally for the propagation of light through such an interface.

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OpenAlex reports 174 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

It is found that there exists a category of material interfaces, readily available, that not only can provide total refraction (i.e., zero reflection) but can also give rise to amphoteric refraction (i.e., both positive and negative refraction) for electromagnetic waves in any frequency domain as well as for ballistic electron waves. These two unusual phenomena are demonstrated experimentally for the propagation of light through such an interface.

Key concepts: Refraction, Negative refraction, Reflection (computer programming), Physics, Total external reflection, Electron, Electromagnetic radiation, Optics

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