High-frequency rectifiers based on type-II Dirac fermions

Author:

Zhang Libo,Chen Zhiqingzi,Zhang Kaixuan,Wang LinORCID,Xu Huang,Han Li,Guo WanlongORCID,Yang Yao,Kuo Chia-Nung,Lue Chin Shan,Mondal DebashisORCID,Fuji JunORCID,Vobornik Ivana,Ghosh Barun,Agarwal Amit,Xing Huaizhong,Chen Xiaoshuang,Politano AntonioORCID,Lu Wei

Abstract

AbstractThe advent of topological semimetals enables the exploitation of symmetry-protected topological phenomena and quantized transport. Here, we present homogeneous rectifiers, converting high-frequency electromagnetic energy into direct current, based on low-energy Dirac fermions of topological semimetal-NiTe2, with state-of-the-art efficiency already in the first implementation. Explicitly, these devices display room-temperature photosensitivity as high as 251 mA W−1 at 0.3 THz in an unbiased mode, with a photocurrent anisotropy ratio of 22, originating from the interplay between the spin-polarized surface and bulk states. Device performances in terms of broadband operation, high dynamic range, as well as their high sensitivity, validate the immense potential and unique advantages associated to the control of nonequilibrium gapless topological states via built-in electric field, electromagnetic polarization and symmetry breaking in topological semimetals. These findings pave the way for the exploitation of topological phase of matter for high-frequency operations in polarization-sensitive sensing, communications and imaging.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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