Enhancement of terahertz response in a microstructure-integrated-type-II Dirac semimetal

Author:

Lv Xuyang12ORCID,Zhang Kaixuan12ORCID,Jiang Mengjie12ORCID,Zhang Shi3ORCID,Zhang Libo23,Han Li23ORCID,Xing Huaizhong2ORCID,Wang Dong2ORCID,Lan Shiqi12ORCID,Wang Lin2ORCID,Tian Shijian12ORCID,Chen Xiaoshuang23ORCID

Affiliation:

1. College of Science, State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, DongHua University 1 , Shanghai 201620, China

2. State Key Laboratory for Infrared Physics, Shanghai Institute of Technical Physics, Chinese Academy of Sciences 2 , Shanghai 200083, China

3. College of Physics and Optoelectronic Engineering, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences 3 , No. 1, Sub-Lane Xiangshan, Xihu District, Hangzhou 310024, China

Abstract

Terahertz detection technology has been confronted with formidable impediments, notably the paucity of sensitivity and operating temperature for photodetectors based on traditional bulk materials. In an attempt to surmount the difficulties, we propose an innovative terahertz detector based on a PtSe2 (type-II Dirac semimetallic material) integrated asymmetric antenna structure that can enhance the terahertz photoresponse by capitalizing on meticulous fabrication procedures. Experimental outcomes demonstrate the remarkable characteristics of the photodetector in the terahertz band, encompassing fast response time (7 µs), large responsivity (3.267 A/W), and low noise equivalent power (3.96 pW/Hz0.5). These accomplishments can be ascribed to the incorporation of the asymmetric metal contact of the four-leaf clover antenna structure and the excellent thermoelectric characteristics of PtSe2. This pioneering investigation consequently unveils a novel methodology for the creation of proficient PtSe2-based terahertz detectors and serves as a catalyst for the promotion of applications and further research within the terahertz sphere.

Funder

Fundamental Research Funds for the Central Universities

National Key Research and Development Program of China

Major Scientific Project of Zhejiang Laboratory

Natural Science Foundation of Shanghai Municipality

Analytical Instrumentation Center

Soft Matter Nanofab

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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