Max-Planck-Institut für Quantenoptik, Garching, Germany.
Opt Lett. 2012 Nov 1;37(21):4498-500. doi: 10.1364/OL.37.004498.
We report on the first (to our knowledge) demonstration of nonlinear dual-frequency-comb spectroscopy. In multi-heterodyne femtosecond Raman-induced Kerr-effect spectroscopy, the Raman gain resulting from the coherent excitation of molecular vibrations by a spectrally narrow pump is imprinted onto the femtosecond laser frequency comb probe spectrum. The birefringence signal induced by the nonlinear interaction of these beams and the sample is heterodyned against a frequency comb local oscillator with a repetition frequency slightly different from that of the comb probe. Such time-domain interference provides multiplex access to the phase and amplitude Raman spectra over a broad spectral bandwidth within a short measurement time.
我们报告了首例(据我们所知)的非线性双频梳光谱学演示。在多外差飞秒受激拉曼-克尔效应光谱学中,由光谱窄泵浦相干激发分子振动产生的拉曼增益被印刻到飞秒激光频率梳探测光谱中。这些光束和样品的非线性相互作用产生的双折射信号与重复频率略不同于探测梳的本地振荡器进行外差拍频。这种时域干涉在短测量时间内提供了对宽光谱带宽内的相位和幅度拉曼光谱的多路复用访问。