Nonmonotonic wavelength dependence of the polarization-sensitive infrared photoresponse of an anisotropic semimetal

红外线的 半金属 极化(电化学) 各向异性 响应度 材料科学 光电子学 电介质 电子能带结构 波长 Weyl半金属 凝聚态物理 物理 光学 带隙 光电探测器 化学 物理化学
作者
Jie Deng,Wei Zhang,Xu Dai,Yu Yu,Zhifeng Li,Wei Wang,Lin Wang,Jing Zhou,Xiaohong Chen
出处
期刊:Nanoscale [Royal Society of Chemistry]
卷期号:14 (19): 7314-7321 被引量:6
标识
DOI:10.1039/d1nr08268j
摘要

Layered semimetals with in-plane anisotropy are promising for advanced polarization-sensitive infrared detection. The investigation of the polarization-dependent photoresponse of semimetals over the whole visible-to-long-wave-infrared range and revealing the physical connection between their optoelectronic properties, optical properties, and electronic band structures is required, but there have been very few studies of this kind. In this work, we conducted a thorough investigation on the polarization-dependent infrared photoresponse of WTe2 over the visible-to-long-wave-infrared range and discovered a textbook-like perfect consistency between the wavelength-dependent polarization-sensitive photoresponse and the anisotropic dielectric constant mainly affected by interband transitions near the Weyl point. It is revealed that the polarization sensitivity and the responsivity both vary non-monotonically with the wavelength. This phenomenon is attributed to the polarization selective excitation of interband transitions associated with asymmetrically distributed electron orbitals around the Weyl points. Concerning the infrared detection properties of WTe2, a maximum responsivity of 0.68 mA W-1 is obtained under self-powered operation. The power dependence of the photoresponse is linear, and the response time is around 14 μs. This work would provoke further studies about the anisotropic photoresponse associated with the transitions even closer to the Dirac or Weyl points, and it provides an approach to select the right semimetal for the right wavelength range of infrared polarization detection.
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