Optical Controlled Terahertz Modulator Based on Tungsten Disulfide Nanosheet

被引:0
|
作者
Zhiyuan Fan
Zhaoxin Geng
Xiaoqin Lv
Yue Su
Yuping Yang
Jian Liu
Hongda Chen
机构
[1] State Key Laboratory of Integrated Optoelectronics,
[2] Institute of Semiconductors,undefined
[3] Chinese Academy of Sciences,undefined
[4] School of Information Engineering,undefined
[5] Minzu University of China,undefined
[6] College of Science,undefined
[7] Minzu University of China,undefined
[8] State Key Laboratory of Superlattices and Microstructures,undefined
[9] Institute of Semiconductors,undefined
[10] Chinese Academy of Sciences,undefined
[11] College of Materials Science and Opto-Electronic Technology,undefined
[12] University of Chinese Academy of Science,undefined
来源
Scientific Reports | / 7卷
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摘要
The terahertz (THz) modulator, which will be applied in next-generation wireless communication, is a key device in a THz communication system. Current THz modulators based on traditional semiconductors and metamaterials have limited modulation depth or modulation range. Therefore, a THz modulator based on annealed tungsten disulfide (WS2, p-type) and high-resistivity silicon (n-type) is demonstrated. Pumped by a laser, the modulator presents a laser power-dependent modulation effect. Ranging from 0.25 to 2 THz, the modulation depth reaches 99% when the pumping laser is 2.59 W/cm2. The modulator works because the p-n heterojunction can separate and limit carriers to change the conductivity of the device, which results in a modulation of the THz wave. The wide band gap of WS2 can promote the separation and limitation of carriers to obtain a larger modulation depth, which provides a new direction for choosing new materials and new structures to fabricate a better THz modulator.
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