Broad/narrowband switchable terahertz absorber based on Dirac semimetal and strontium titanate for temperature sensing

Author:

Zhang Yong Gang1,Liu Wei,Yao Hai Yun2ORCID,Liang Lan Ju2,Yan Xin2ORCID,Zong Ming Ji2,Gao Shan2,Huang Cheng Cheng,Qiu Fu,Feng Zhen Wei,Zhang Rui,Hu Xiao Fei2,Li Zhen Hua2ORCID,Wang Zi Qun2

Affiliation:

1. Anhui University of Science and Technology

2. Zaozhuang University

Abstract

A broadband and narrowband switchable terahertz (THz) absorber based on a bulk Dirac semimetal (BDS) and strontium titanate (STO) is proposed. Narrowband and broadband absorption can be switched by adjusting the Fermi level of the BDS. When the Fermi level of the BDS is 100 meV, the device is an absorber with three narrowband absorption peaks. The frequencies are 0.44, 0.86, and 1.96 THz, respectively, when the temperature of STO is 250 K. By adjusting the temperature of STO from 250 to 500 K, the blue shifts of the frequencies are approximately 0.14, 0.32, and 0.60 THz, respectively. The sensitivities of the three absorption peaks are 0.56, 1.27, and 2.38 GHz/K, respectively. When the Fermi level of the BDS is adjusted from 100 to 30 meV, the device can be switched to a broadband absorber with a bandwidth of 0.70 THz. By adjusting the temperature of STO from 250 to 500 K, the central frequency shifts from 1.40 to 1.79 THz, and the bandwidth broadens from 0.70 to 0.96 THz. The sensitivity of the central frequency is 1.57 GHz/K. The absorber also has a wide range of potential applications in multifunctional tunable devices, such as temperature sensors, stealth equipment, and filters.

Funder

Anhui University of Science and Technology

National Natural Science Foundation of China

Special Funding of the Taishan Scholar Project

Natural Science Foundation of Shandong Province

National Key Research and Development Program of China

Qingchuang Science and Technology Plan of Shandong Universities

Youth Entrepreneurship Talents Introduction Project in Shandong Province Higher Education Institutions

Publisher

Optica Publishing Group

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