Suppr超能文献

一款跨度达十年的高分辨率异步光学采样太赫兹时域和频率梳光谱仪。

A decade-spanning high-resolution asynchronous optical sampling terahertz time-domain and frequency comb spectrometer.

作者信息

Good Jacob T, Holland Daniel B, Finneran Ian A, Carroll P Brandon, Kelley Matthew J, Blake Geoffrey A

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

Rev Sci Instrum. 2015 Oct;86(10):103107. doi: 10.1063/1.4932567.

Abstract

We present the design and capabilities of a high-resolution, decade-spanning ASynchronous OPtical Sampling (ASOPS)-based TeraHertz Time-Domain Spectroscopy (THz-TDS) instrument. Our system employs dual mode-locked femtosecond Ti:Sapphire oscillators with repetition rates offset locked at 100 Hz via a Phase-Locked Loop (PLL) operating at the 60th harmonic of the ∼80 MHz oscillator repetition rates. The respective time delays of the individual laser pulses are scanned across a 12.5 ns window in a laboratory scan time of 10 ms, supporting a time delay resolution as fine as 15.6 fs. The repetition rate of the pump oscillator is synchronized to a Rb frequency standard via a PLL operating at the 12th harmonic of the oscillator repetition rate, achieving milliHertz (mHz) stability. We characterize the timing jitter of the system using an air-spaced etalon, an optical cross correlator, and the phase noise spectrum of the PLL. Spectroscopic applications of ASOPS-THz-TDS are demonstrated by measuring water vapor absorption lines from 0.55 to 3.35 THz and acetonitrile absorption lines from 0.13 to 1.39 THz in a short pathlength gas cell. With 70 min of data acquisition, a 50 dB signal-to-noise ratio is achieved. The achieved root-mean-square deviation is 14.6 MHz, with a mean deviation of 11.6 MHz, for the measured water line center frequencies as compared to the JPL molecular spectroscopy database. Further, with the same instrument and data acquisition hardware, we use the ability to control the repetition rate of the pump oscillator to enable THz frequency comb spectroscopy (THz-FCS). Here, a frequency comb with a tooth width of 5 MHz is generated and used to fully resolve the pure rotational spectrum of acetonitrile with Doppler-limited precision. The oscillator repetition rate stability achieved by our PLL lock circuits enables sub-MHz tooth width generation, if desired. This instrument provides unprecedented decade-spanning, tunable resolution, from 80 MHz down to sub-MHz, and heralds a new generation of gas-phase spectroscopic tools in the THz region.

摘要

我们介绍了一种基于高分辨率、跨越十年的异步光学采样(ASOPS)的太赫兹时域光谱(THz-TDS)仪器的设计和性能。我们的系统采用了双锁模飞秒钛宝石振荡器,其重复频率通过一个锁相环(PLL)以100 Hz的频率偏移锁定,该锁相环工作在约80 MHz振荡器重复频率的第60谐波上。在10 ms的实验室扫描时间内,各个激光脉冲的相应时间延迟在12.5 ns的窗口内进行扫描,支持高达15.6 fs的时间延迟分辨率。泵浦振荡器的重复频率通过一个工作在振荡器重复频率第12谐波上的锁相环与铷频率标准同步,实现了毫赫兹(mHz)的稳定性。我们使用空气间隔标准具、光学交叉相关器和锁相环的相位噪声谱来表征系统的定时抖动。通过在短程气室中测量0.55至3.35 THz的水蒸气吸收线和0.13至1.39 THz的乙腈吸收线,展示了ASOPS-THz-TDS的光谱应用。经过70分钟的数据采集,实现了50 dB的信噪比。与喷气推进实验室(JPL)分子光谱数据库相比,所测水线中心频率的均方根偏差为14.6 MHz,平均偏差为11.6 MHz。此外,使用相同的仪器和数据采集硬件,我们利用控制泵浦振荡器重复频率的能力实现了太赫兹频率梳光谱(THz-FCS)。在此,产生了一个齿宽为5 MHz的频率梳,并用于以多普勒极限精度完全解析乙腈的纯转动光谱。如果需要,我们的锁相环锁定电路实现的振荡器重复频率稳定性能够产生亚兆赫兹的齿宽。该仪器提供了前所未有的跨越十年的可调分辨率,从80 MHz到亚兆赫兹,并预示着太赫兹区域新一代气相光谱工具的诞生。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验