Terahertz detection using electro-optic effect in a ZnTe layered structure

A. Eshaghi, A. Soltani, M. Shahabadi
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Abstract

In this work, a layered structure of ZnTe slabs separated by air-gaps is used to detect terahertz pulses. The structure which can be considered as a periodic structure is operating close to its stop-band edge where the transmission of the optical signal is attenuated. Applying the terahertz signal will vary the refractive index of the ZnTe slabs of the periodic structure due to the electro-optic effect in ZnTe. Consequently, the stop-band will shift in the presence of the terahertz signal. Hence, the intensity of the transmitted optical signal is modulated by the terahertz pulse, thus the terahertz signal can be detected. To examine the performance of the proposed detector, a finite-difference time-domain (FDTD) analysis is employed so that the nonlinear processes involved in the ZnTe slabs can be taken into account rigorously. Performance of the proposed structure will be compared with that of the conventional detectors based on a single ZnTe layer.
利用电光效应在ZnTe层状结构中进行太赫兹探测
在这项工作中,由气隙隔开的锌钛板的分层结构被用来检测太赫兹脉冲。该结构可被认为是周期结构,其工作在其禁带边缘附近,在此处光信号的传输被衰减。太赫兹信号的施加将会改变周期结构ZnTe板的折射率,这是由于ZnTe中的电光效应。因此,在太赫兹信号存在的情况下,阻带会发生位移。因此,传输光信号的强度由太赫兹脉冲调制,从而可以检测到太赫兹信号。为了检验所提出的探测器的性能,采用了时域有限差分(FDTD)分析,以便严格考虑ZnTe板中涉及的非线性过程。该结构的性能将与基于单一ZnTe层的传统探测器的性能进行比较。
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