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Review of anisotropic terahertz material response (Review)

机译:各向异性太赫兹材料响应的综述(综述)

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摘要

Anisotropy is ubiquitous in solids and enhanced in low-dimensional materials. In response to an electromagnetic wave, anisotropic absorptive and refractive properties result in dichroic and birefringent optical phenomena both in the linear and nonlinear optics regimes. Such material properties have led to a diverse array of useful polarization components in the visible and near-infrared, but mature technology is non-existent in the terahertz (THz). Here, we review several novel types of anisotropic material responses observed in the THz frequency range, including both linear and circular anisotropy, which have long-term implications for the development of THz polarization optics. We start with the extreme linear anisotropy of macroscopically aligned carbon nanotubes, arising from their intrinsically anisotropic dynamic conductivity. Magnetically induced anisotropy will then be reviewed, including the giant Faraday effects observed in semiconductors, semimetals, two-dimensional electron systems.
机译:各向异性在固体中无处不在,在低维材料中则增强。响应电磁波,各向异性的吸收和折射特性会在线性和非线性光学范围内导致二向色和双折射光学现象。这种材料的特性导致可见光和近红外光中有用偏振成分的多样性,但是太赫兹(THz)中不存在成熟的技术。在这里,我们回顾了在THz频率范围内观察到的几种新型各向异性材料响应,包括线性和圆形各向异性,这对THz偏振光学器件的发展具有长期影响。我们从宏观上排列的碳纳米管的极端线性各向异性开始,这是由其固有的各向异性动态电导率引起的。然后将回顾磁感应各向异性,包括在半导体,半金属,二维电子系统中观察到的巨大法拉第效应。

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