Gu Ziyu, Vieitez M Ofelia, van Duijn Eric-Jan, Ubachs Wim
Institute for Lasers, Life and BioPhotonics, VU University Amsterdam, De Boelelaan 1081, 1081 HV Amsterdam, The Netherlands.
Rev Sci Instrum. 2012 May;83(5):053112. doi: 10.1063/1.4721272.
A spectrometer for the measurement of spontaneous Rayleigh-Brillouin (RB) scattering line profiles at ultraviolet wavelengths from gas phase molecules has been developed, employing a high-power frequency-stabilized UV-laser with narrow bandwidth (2 MHz). The UV-light from a frequency-doubled titanium:sapphire laser is further amplified in an enhancement cavity, delivering a 5 W UV-beam propagating through the interaction region inside a scattering cell. The design of the RB-scattering cell allows for measurements at gas pressures in the range 0-4 bars and at stably controlled temperatures from -30 °C to 70 °C. A scannable Fabry-Perot analyzer with instrument resolution of 232 MHz probes the RB profiles. Measurements on N(2) and SF(6) gases demonstrate that the high signal-to-noise ratio is achievable with the instrument at the 1% level at the peak amplitude of the scattering profile.
已开发出一种用于测量气相分子在紫外波长下自发瑞利 - 布里渊(RB)散射线轮廓的光谱仪,该光谱仪采用了具有窄带宽(2 MHz)的高功率频率稳定紫外激光器。来自倍频钛宝石激光器的紫外光在增强腔中进一步放大,产生一束5 W的紫外光束,该光束穿过散射池内的相互作用区域。RB散射池的设计允许在0至4巴的气压以及 - 30°C至70°C的稳定控制温度下进行测量。具有232 MHz仪器分辨率的可扫描法布里 - 珀罗分析仪探测RB轮廓。对N₂和SF₆气体的测量表明,该仪器在散射轮廓峰值幅度处可实现1%水平的高信噪比。