Opt Lett. 2014 Jan 1;39(1):108-10. doi: 10.1364/OL.39.000108.
We report on ultralow frequency Stokes and anti-Stokes Raman spectroscopy of single living cells and microsized particles in an aqueous medium with a frequency shift down to 10 cm(-1) by the combination of a hot rubidium (Rb) vapor filter, a confocal pinhole, and optical trapping. A single frequency-stabilized diode laser beam at 780.2 nm is used to optically trap and excite a single living cell or microparticle, and the Rayleigh scattering light from the particle is effectively blocked with a Rb vapor cell and a confocal pinhole. Ultralow frequency Raman spectra of the trapped cells or microparticles in both Stokes and anti-Stokes regions are then measured with a single-stage CCD spectrograph.
我们报告了在水溶液中单细胞和微颗粒的超低频斯托克斯和反斯托克斯拉曼光谱,通过将热铷(Rb)蒸汽滤光片、共焦针孔和光阱相结合,将频移降低至 10 cm(-1)。使用单频稳定二极管激光器在 780.2nm 处对单个活细胞或微颗粒进行光阱和激发,并用 Rb 蒸汽室和共焦针孔有效阻挡颗粒的瑞利散射光。然后,使用单级 CCD 光谱仪测量捕获细胞或微颗粒在斯托克斯和反斯托克斯区域的超低频拉曼光谱。