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超晶格乘法器在高分辨率太赫兹光谱学中的应用。

Application of superlattice multipliers for high-resolution terahertz spectroscopy.

作者信息

Endres C P, Lewen F, Giesen T F, Schlemmer S, Paveliev D G, Koschurinov Y I, Ustinov V M, Zhucov A E

机构信息

I. Physikalisches Institut, Universtität zu Köln, Köln, Germany.

出版信息

Rev Sci Instrum. 2007 Apr;78(4):043106. doi: 10.1063/1.2722401.

Abstract

Frequency multipliers based on superlattice (SL) devices as nonlinear elements have been developed as radiation sources for a terahertz (THz) laboratory spectrometer. Input frequencies of 100 and 250 GHz from backward wave oscillators have been multiplied up to the 11th harmonic, producing usable frequencies up to 2.7 THz. Even at these high frequencies the output power is sufficient for laboratory spectroscopy. Comparisons to conventional high-resolution microwave spectroscopy methods reveal several superior features of this new device such as very high line frequency accuracies, broadband tunability, high output power levels at odd harmonics of the input frequency up to high orders, and a robust applicability.

摘要

基于超晶格(SL)器件作为非线性元件的倍频器已被开发用作太赫兹(THz)实验室光谱仪的辐射源。来自返波振荡器的100和250GHz输入频率已被倍频至第11谐波,产生高达2.7THz的可用频率。即使在这些高频下,输出功率也足以用于实验室光谱分析。与传统高分辨率微波光谱方法的比较揭示了这种新器件的几个优越特性,如非常高的谱线频率精度、宽带可调谐性、在输入频率的奇次谐波直至高阶时的高输出功率水平以及强大的适用性。

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