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Negative refraction in relativistic electron gas

机译:相对论电子气体中的负折射

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We show that a gas of relativistic electrons is a left-handed material at low frequencies by computing the effective electric permittivity and effective magnetic permeability that appear in Maxwell's equations in terms of the responses appearing in the constitutive relations, and showing that the former are both negative below the same frequency, which coincides with the zero-momentum frequency of longitudinal plasmons. We also show, by explicit computation, that the photonic mode of the electromagnetic radiation does not dissipate energy, confirming that it propagates in the gas with the speed of light in vacuum, and that the medium is transparent to it. We then combine those results to show that the gas has a negative effective index of refraction n(eff) = -1. We illustrate the consequences of this fact for Snell's law, and for the reflection and transmission coefficients of the gas. (C) 2020 Optical Society of America
机译:我们通过计算麦克斯韦方程组中出现的有效介电常数和有效磁导率,根据本构关系中出现的响应,证明了相对论电子气体在低频时是左手材料,并表明前者在相同频率下均为负值,这与纵向等离子体激元的零动量频率一致。我们还通过显式计算表明,电磁辐射的光子模式不会耗散能量,从而证实了它在真空中以光速在气体中传播,并且介质对它是透明的。然后,我们结合这些结果表明,气体的负有效折射率n(eff)=-1。我们说明了这一事实对斯奈尔定律以及气体的反射系数和透射系数的影响。(C) 2020美国光学学会

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