论文标题
可视化各向异性Weyl半含量中的散装和边缘光电流
Visualizing bulk and edge photocurrent flow in anisotropic Weyl semimetals
论文作者
论文摘要
对于光电应用,需要将光线纠正到其散装电流中的材料。在破裂的Weyl半含量中,由于非线性光学过程在Weyl节点附近得到增强,因此可能会出现大量光电。然而,这些材料的光响应通常是通过扫描光电流显微镜(SPCM)研究的,后者涉足光电流产生和收集的影响。在这里,我们使用具有氮 - 胶合中心旋转的高敏量子磁力计直接成像II型Weyl半含量WTE2和Tairte4内部的光电流。我们阐明了一种未知的大量光电流产生的机制,称为各向异性光热效应(APTE),其中沿着不同晶体轴沿着光电激发光电流驱动复杂的光电循环。使用同时的SPCM和样品内部和边缘的磁成像,我们可视化ApaTe如何通过Shockley-Ramo定理刺激我们Weyl Semimetal设备中收集的远距离光电流。我们的结果突出了使用各向异性均匀的材料的当前流量的被忽视但广泛相关的来源,并激发了新型的光电探测器。
Materials that rectify light into current in their bulk are desired for optoelectronic applications. In inversion-breaking Weyl semimetals, bulk photocurrents may arise due to nonlinear optical processes that are enhanced near the Weyl nodes. However, the photoresponse of these materials is commonly studied by scanning photocurrent microscopy (SPCM), which convolves the effects of photocurrent generation and collection. Here, we directly image the photocurrent flow inside the type-II Weyl semimetals WTe2 and TaIrTe4 using high-sensitivity quantum magnetometry with nitrogen-vacancy center spins. We elucidate an unknown mechanism for bulk photocurrent generation termed the anisotropic photothermoelectric effect (APTE), where unequal thermopowers along different crystal axes drive intricate circulations of photocurrent around the photoexcitation. Using simultaneous SPCM and magnetic imaging at the sample's interior and edges, we visualize how the APTE stimulates the long-range photocurrent collected in our Weyl semimetal devices through the Shockley-Ramo theorem. Our results highlight an overlooked, but widely relevant source of current flow and inspire novel photodetectors using homogeneous materials with anisotropy.