Active graphene–silicon hybrid diode for terahertz waves

被引:0
作者
Quan Li
Zhen Tian
Xueqian Zhang
Ranjan Singh
Liangliang Du
Jianqiang Gu
Jiaguang Han
Weili Zhang
机构
[1] Center for Terahertz Waves and College of Precision Instrument and Optoelectronics Engineering,Division of Physics and Applied Physics
[2] Tianjin University and the Key Laboratory of Optoelectronics Information and Technology (Ministry of Education),undefined
[3] School of Electrical and Computer Engineering,undefined
[4] Oklahoma State University,undefined
[5] Center for Disruptive Photonic Technologies,undefined
[6] School of Physical and Mathematical Sciences,undefined
[7] Nanyang Technological University,undefined
来源
Nature Communications | / 6卷
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摘要
Controlling the propagation properties of the terahertz waves in graphene holds great promise in enabling novel technologies for the convergence of electronics and photonics. A diode is a fundamental electronic device that allows the passage of current in just one direction based on the polarity of the applied voltage. With simultaneous optical and electrical excitations, we experimentally demonstrate an active diode for the terahertz waves consisting of a graphene–silicon hybrid film. The diode transmits terahertz waves when biased with a positive voltage while attenuates the wave under a low negative voltage, which can be seen as an analogue of an electronic semiconductor diode. Here, we obtain a large transmission modulation of 83% in the graphene–silicon hybrid film, which exhibits tremendous potential for applications in designing broadband terahertz modulators and switchable terahertz plasmonic and metamaterial devices.
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