论文标题

在生物学相关的多原子分子的探针束二色性和双重反射性

Probe Beam Dichroism and Birefringence in Stumulated Raman Scattering of Biologically Relevant Polyatomic Molecules

论文作者

Semak, Bogdan V., Beltukov, Yaroslav M., Vasyutinskii, Oleg S.

论文摘要

理论上研究了多原子分子中沉重的拉曼散射(SRS)中的二分法和双重效应。已经得出了一般表达式,描述了通过任意多原子分子的溶液传输后探针脉冲的强度和极化的变化,以使每种激光脉冲的任何初始极化。表达式是用球形张量算子编写的,该量子允许将两个光束极化矩阵分离和包含非线性光学敏感性的三个标量值的材料部分,其中该等级k限于值k = 0,1,2。表达式对于泵和stokes光束传播的任意指导以及两光束的任意极化有效。表达式包含分子激发态中线性二色性和双折射的贡献。结果表明,在某些条件下,可以同时观察到这两种效应。考虑了泵和脉冲梁通过分子样品的几乎几乎共线传播的几何形状,并表明,在实验中可以通过适当的选择将探头束偏置分析仪放置在光电驱动器前面的探测束偏置分析仪,从线性二色和双重二色性到信号的贡献完全分离。所获得的表达式用于描述使用作者最近开发的极化调制技术获得的信号(Gorbunova等,Phys。Chem。Chem。Chem。Chem。2020,第22卷,18155-18168)。结果表明,可以在正交到调制参考信号的第二个谐波中观察到调制的二科和双重信号。

The dichroism and birefringence effects in stumulated Raman scattering (SRS) in polyatomic molecules were studied theoretically. General expressions have been derived describing the change of the intensity and polarization of the probe pulse after transmission through a solution of arbitrary polyatomic molecules for any initial polarization of each of the laser pulses. The expressions were written in terms of spherical tensor operators that allowed for separation of the both beams polarization matrices and the material part containing three scalar values of nonlinear optical susceptibility where that rank K is limited to the values K=0,1,2. The expressions are valid for arbitrary directions of propagation of both pump and Stokes light beams and arbitrary polarizations of both beams. The expressions contain contributions from linear dichroism and birefringence in the molecular excited states. It was shown that, under certain conditions, both effects can be observed simultaneously. The geometry of almost collinear propagation of the pump and Stokes pulse beams through the molecular sample was considered, and it was shown that the contributions from linear dichroism and birefringence to the signal can be completely separated in the experiment by means of an appropriate choice of a probe beam polarization analyzer placed in front of the photodetector. The expressions obtained were used to describe the signals obtained using the polarization-modulation technique developed recently by the authors (Gorbunova et al, Phys. Chem. Chem. Phys. 2020, Vol. 22, 18155-18168). It was shown that the modulated dichroism and birefringence signals could be observed in quadrature to the second harmonic of the modulated reference signal.

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