首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Giant anisotropic nonlinear optical response in transition metal monopnictide Weyl semimetals
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APS -APS March Meeting 2017 - Event - Giant anisotropic nonlinear optical response in transition metal monopnictide Weyl semimetals

机译:APS -APS 3月举行2017年 - 事件 - 过渡金属巨大威尔半岩中的巨型各向异性非线性光学响应

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Recently Weyl quasiparticles have been observed in transition metal monopnictides (TMMPs) such as TaAs, a class of noncentrosymmetric materials that heretofore received only limited attention. The question that arises now is whether these materials will exhibit novel, enhanced, or technologically applicable electronic properties. The TMMPs are polar metals, a rare subset of inversion-breaking crystals that would allow spontaneous polarization, were it not screened by conduction electrons. Despite the absence of spontaneous polarization, polar metals can exhibit other signatures of inversion-symmetry breaking, most notably second-order nonlinear optical polarizability, $chi^{(2)}$, leading to phenomena such as optical rectification and second-harmonic generation (SHG). Here we report measurements of SHG that reveal a giant, anisotropic $chi^{(2)}$ in the TMMPs TaAs, TaP, and NbAs. With the fundamental and second harmonic fields oriented parallel to the polar axis, the value of $chi^{(2)}$ is larger by almost one order of magnitude than its value in the archetypal electro-optic materials GaAs and ZnTe, and in fact larger than reported in any crystal to date. Reference: arXiv:1609.04894.
机译:最近,在过渡金属单一(TMMPS)中已观察到Weyl QuasiPally,例如TAAS,一类迄今为止仅受到限制的关注的非致重材料。现在出现的问题是这些材料是否将展示新颖,增强或技术适用的电子特性。 TMMPS是极性金属,罕见的倒置晶体的稀有末端,其允许自发极化,是通过传导电子筛选。尽管没有自发极化,极性金属可以表现出反转对称的其他签名,最符合的二阶非线性光学极化,$ CHI ^ {(2)} $,导致诸如光学整流和二次谐波生成的现象(SHG)。在这里,我们报告了SHG的测量,揭示了TMMPS TAAS,TAP和NBAS中的巨型,各向异性$ CHI ^ {(2)} $。利用与极轴平行导向的基本和二次谐波场,$ CHI ^ {(2)} $的值比其原型电光材料GAAS和ZNTE中的值大于其值差异几乎一阶数。事实上大于任何水晶迄今为止报告的事实。参考:ARXIV:1609.04894。

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