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用于超相对论电子的逆设计窄带太赫兹辐射器。

Inverse-Designed Narrowband THz Radiator for Ultrarelativistic Electrons.

作者信息

Hermann Benedikt, Haeusler Urs, Yadav Gyanendra, Kirchner Adrian, Feurer Thomas, Welsch Carsten, Hommelhoff Peter, Ischebeck Rasmus

机构信息

Paul Scherrer Institut, 5232 Villigen, PSI, Switzerland.

Institute of Applied Physics, University of Bern, 3012 Bern, Switzerland.

出版信息

ACS Photonics. 2022 Apr 20;9(4):1143-1149. doi: 10.1021/acsphotonics.1c01932. Epub 2022 Mar 16.

Abstract

THz radiation finds various applications in science and technology. Pump-probe experiments at free-electron lasers typically rely on THz radiation generated by optical rectification of ultrafast laser pulses in electro-optic crystals. A compact and cost-efficient alternative is offered by the Smith-Purcell effect: a charged particle beam passes a periodic structure and generates synchronous radiation. Here, we employ the technique of photonic inverse design to optimize a structure for Smith-Purcell radiation at a single wavelength from ultrarelativistic electrons. The resulting design is highly resonant and emits narrowbandly. Experiments with a 3D-printed model for a wavelength of 900 μm show coherent enhancement. The versatility of inverse design offers a simple adaption of the structure to other electron energies or radiation wavelengths. This approach could advance beam-based THz generation for a wide range of applications.

摘要

太赫兹辐射在科学技术领域有多种应用。自由电子激光器的泵浦 - 探测实验通常依赖于超快激光脉冲在电光晶体中通过光学整流产生的太赫兹辐射。史密斯 - 珀塞尔效应提供了一种紧凑且经济高效的替代方案:带电粒子束穿过周期性结构并产生同步辐射。在此,我们采用光子逆向设计技术来优化一种结构,以便从超相对论电子产生单一波长的史密斯 - 珀塞尔辐射。所得设计具有高度共振性且窄带发射。使用波长为900μm的3D打印模型进行的实验显示出相干增强。逆向设计的通用性使得该结构能够简单地适应其他电子能量或辐射波长。这种方法可为广泛的应用推进基于束流的太赫兹产生技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a56/9026277/7e5be898bb67/ph1c01932_0001.jpg

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