Fábián Gábor, Kramberger Christian, Friedrich Alexander, Simon Ferenc, Pichler Thomas
Department of Physics, Budapest University of Technology and Economics, Budapest, Hungary.
Rev Sci Instrum. 2011 Feb;82(2):023905. doi: 10.1063/1.3544023.
We present a high sensitivity single-monochromator Raman spectrometer which allows operation with a tunable laser source. The instrument is based on the modification of a commercial Raman spectrometer; such instruments operate with interference Rayleigh filters which also act as laser mirrors and are usually considered as inherently narrow band. In our design, the two tasks are separated and the filter can be freely rotated without much effect on the light alignment. Since rotation shifts the filter passband, this modification allows tunable operation with efficient stray light filtering down to 150 cm(-1). The design is optimized for single-wall carbon nanotubes, for which the performance is demonstrated using a tunable dye laser source. The spectrometer thus combines the high sensitivity with the broadband characteristics of usual triple monochromator systems.
我们展示了一种高灵敏度单单色仪拉曼光谱仪,它允许使用可调谐激光源进行操作。该仪器基于对商用拉曼光谱仪的改进;此类仪器使用干涉瑞利滤波器,该滤波器同时也充当激光镜,通常被认为本质上是窄带的。在我们的设计中,这两项任务被分开,并且滤波器可以自由旋转而对光准直影响不大。由于旋转会使滤波器通带发生偏移,这种改进允许在高效滤除杂散光至150 cm(-1)的情况下进行可调谐操作。该设计针对单壁碳纳米管进行了优化,并使用可调谐染料激光源展示了其性能。因此,该光谱仪将高灵敏度与常规三单色仪系统的宽带特性相结合。