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利用同步辐射和可调谐泵浦的超宽带红外泵浦-探测光谱学。

Ultra-broadband infrared pump-probe spectroscopy using synchrotron radiation and a tuneable pump.

作者信息

Carroll Lee, Friedli Peter, Lerch Philippe, Schneider Jörg, Treyer Daniel, Hunziker Stephan, Stutz Stefan, Sigg Hans

机构信息

Laboratory for Micro and Nanotechnology, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland.

出版信息

Rev Sci Instrum. 2011 Jun;82(6):063101. doi: 10.1063/1.3592332.

Abstract

Synchrotron infrared sources have become popular mainly because of their excellent broadband brilliance, which enables spectroscopically resolved spatial-mapping of stationary objects at the diffraction limit. In this article we focus on an often-neglected further advantage of such sources - their unique time-structure - to bring such broadband spectroscopy to the time domain, for studying dynamic phenomenon down to the 100 ps limit. We describe the ultra-broadband (12.5 to 1.1 μm) Fourier transform pump-probe setup, for condensed matter transmission- and reflection-spectroscopy, installed at the X01DC infrared beam-line of the Swiss Light Source (SLS). The optical pump consists of a widely tuneable 100 ps 1 kHz laser system, covering 94% of the 16 to 1.1 μm range. A thorough description of the system is given, including (i) the vector-modulator providing purely electronic tuning of the pump-probe overlap up to 1 ms with sub-ps time resolution, (ii) the 500 MHz data acquisition system interfaced with the experimental physics and industrial control system (EPICS) based SLS control system for consecutive pulse sampling, and (iii) the step-scan time-slice Fourier transform scheme for simultaneous recording of the dual-channel pumped, un-pumped, and difference spectra. The typical signal/noise ratio of a single interferogram in a 100 ps time slice is 300 (measured during one single 140 s TopUp period). This signal/noise ratio is comparable to that of existing gated Globar pump-probe Fourier transform spectroscopy, but brings up to four orders of magnitude better time resolution. To showcase the utility of broadband pump-probe spectroscopy, we investigate a Ge-on-Si material system similar to that in which optically pumped direct-gap lasing was recently reported. We show that the mid-infrared reflection-spectra can be used to determine the optically injected carrier density, while the mid- and near-infrared transmission-spectra can be used to separate the strong pump-induced absorption and inversion processes present at the direct-gap energy.

摘要

同步辐射红外光源之所以受到欢迎,主要是因为其具有出色的宽带亮度,这使得在衍射极限下能够对静止物体进行光谱分辨的空间映射。在本文中,我们将重点关注此类光源一个常被忽视的进一步优势——其独特的时间结构,以便将这种宽带光谱学引入时域,用于研究低至100皮秒极限的动态现象。我们描述了安装在瑞士光源(SLS)的X01DC红外光束线上的用于凝聚态物质透射和反射光谱学的超宽带(12.5至1.1微米)傅里叶变换泵浦 - 探测装置。光泵浦由一个广泛可调谐的100皮秒1千赫兹激光系统组成,覆盖16至1.1微米范围的94%。文中给出了该系统的详细描述,包括:(i)矢量调制器,可提供高达1毫秒的泵浦 - 探测重叠的纯电子调谐,时间分辨率低于皮秒;(ii)与基于实验物理和工业控制系统(EPICS)的SLS控制系统接口的500兆赫兹数据采集系统,用于连续脉冲采样;(iii)用于同时记录双通道泵浦、未泵浦和差谱的步进扫描时间切片傅里叶变换方案。在100皮秒时间切片内单个干涉图的典型信噪比为300(在单个140秒的TopUp周期内测量)。该信噪比与现有的选通Globar泵浦 - 探测傅里叶变换光谱学相当,但时间分辨率提高了多达四个数量级。为了展示宽带泵浦 - 探测光谱学的实用性,我们研究了一种类似于最近报道了光泵浦直接带隙激光的锗硅材料系统。我们表明,中红外反射光谱可用于确定光注入载流子密度,而中红外和近红外透射光谱可用于分离在直接带隙能量处存在的强泵浦诱导吸收和反转过程。

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