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室温下2.48 - 2.75太赫兹相干光谱源的演示。

Demonstration of a room temperature 2.48-2.75 THz coherent spectroscopy source.

作者信息

Pearson John C, Drouin Brian J, Maestrini Alain, Mehdi Imran, Ward John, Lin Robert H, Yu Shanshan, Gill John J, Thomas Bertrand, Lee Choonsup, Chattopadhyay Goutam, Schlecht Erich, Maiwald Frank W, Goldsmith Paul F, Siegel Peter

机构信息

Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Drive, Pasadena California 91109, USA.

出版信息

Rev Sci Instrum. 2011 Sep;82(9):093105. doi: 10.1063/1.3617420.

Abstract

We report the first demonstration of a continuous wave coherent source covering 2.48-2.75 THz, with greater than 10% instantaneous tuning bandwidth and having 1-14 μW of output power at room temperature. This source is based on a 91.8-101.8 GHz synthesizer followed by a power amplifier and three cascaded frequency triplers. It demonstrates for the first time that purely electronic solid-state sources can generate a useful amount of power in a region of the electromagnetic spectrum where lasers (solid state or gas) were previously the only available coherent sources. The bandwidth, agility, and operability of this THz source have enabled wideband, high resolution spectroscopic measurements of water, methanol, and carbon monoxide with a resolution and signal-to-noise ratio unmatched by any other existing system, providing new insight in the physics of these molecules. Furthermore, the power and optical beam quality are high enough to observe the Lamb-dip effect in water. The source frequency has an absolute accuracy better than 1 part in 10(12) and the spectrometer achieves sub-Doppler frequency resolution better than 1 part in 10(8). The harmonic purity is better than 25 dB. This source can serve as a coherent signal for absorption spectroscopy, a local oscillator for a variety of heterodyne systems and can be used as a method for precision control of more powerful but much less frequency agile quantum mechanical terahertz sources.

摘要

我们报道了首个覆盖2.48 - 2.75太赫兹的连续波相干源,其瞬时调谐带宽大于10%,在室温下输出功率为1 - 14微瓦。该源基于一个91.8 - 101.8吉赫兹的合成器,其后跟随一个功率放大器和三个级联的三倍频器。它首次证明了纯电子固态源能够在电磁频谱的一个区域产生可观的功率,而在该区域此前唯一可用的相干源是激光器(固态或气体)。这个太赫兹源的带宽、灵活性和可操作性使得对水、甲醇和一氧化碳进行宽带、高分辨率光谱测量成为可能,其分辨率和信噪比是任何其他现有系统都无法比拟的,为这些分子的物理学研究提供了新的见解。此外,其功率和光束质量足够高,能够观测到水中的兰姆凹陷效应。源频率的绝对精度优于10的12次方分之一,光谱仪实现了优于10的8次方分之一的亚多普勒频率分辨率。谐波纯度优于25分贝。该源可作为吸收光谱的相干信号、各种外差系统的本地振荡器,并且可作为一种方法用于对功率更大但频率灵活性低得多的量子力学太赫兹源进行精确控制。

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