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Tunable room temperature solid state THz source based on Smith-Purcell radiation

机译:基于Smith-Purcell辐射的可调室温固态THz光源

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摘要

This paper presents the theory and design of a novel, low-power, compact, room-temperature, tunable, solid state THz source of Smith-Purcell radiation. The design comprises a Transferred Electron Device and a metal transmission grating separated by a high-K dielectric. When a sufficiently high electric field is applied across the cathode and anode of the device, space-charge regions (also known as dipole or Gunn domains) form within the device and propagate across it. The moving dipole domains couple to the grating electromagnetic modes thereby mimicking the bunching of electrons seen in free-electron lasers. The result is the generation of coherent Smith-Purcell radiation that is tunable via adjusting the voltage applied across the device. The design is scalable from RF, through the THz, into the long-wave infrared via grating geometry and device material changes. Time-domain full-wave electromagnetic simulations were performed to design such a device for use in the THz region. The simulation results predict coherent emission at 1.0 THz.
机译:本文介绍了一种新型,低功率,紧凑,室温,可调,固态THz Smith-Purcell辐射源的理论和设计。该设计包括一个转移电子器件和一个由高K电介质隔开的金属传输光栅。当在器件的阴极和阳极上施加足够高的电场时,在器件内会形成空间电荷区域(也称为偶极或耿氏域),并在整个器件上传播。移动偶极子域耦合到光栅电磁模式,从而模仿在自由电子激光器中看到的电子束。结果是产生了相干的Smith-Purcell辐射,该辐射可以通过调节设备两端施加的电压来调节。通过光栅的几何形状和器件材料的变化,该设计可以从RF扩展到THz,再扩展到长波红外。进行时域全波电磁仿真以设计用于THz区域的设备。仿真结果预测了1.0 THz处的相干发射。

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