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Characterization of intensity-dependent optical rotation phenomena in chiral molecules in solution

机译:溶液中手性分子强度依赖性旋光现象的表征

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The rotation of the plane of polarization of linearly polarized light by chiral molecules in solution is due to a forward scattering event. Ordinary optical rotation, a single-photon effect, is independent of intensity. As the light intensity is increased, other effects can appear, such as two-photon scattering or alignment of the molecule by one photon and scattering with a change of polarization by another. Both of these effects result in intensity-dependent (or nonlinear) optical rotation. A polarimeter was used to measure the nonlinear optical rotation of solutions in a heterodyne experiment. No nonlinear optical rotation was found in molecules lacking an absorption band near the laser frequency. In the three pyrimidine nucleosides studied, which do have such an absorption band, a nonlinear optical rotation was identified that was cumulative with each laser pulse. The effect persisted with a time constant that was on the order of seconds and characteristic of the molecule. (c) 2007 American Institute of Physics.
机译:溶液中手性分子对线性偏振光的偏振面的旋转是由于前向散射事件引起的。普通旋光,即单光子效应,与强度无关。随着光强度的增加,可能会出现其他影响,例如双光子散射或分子被一个光子排列并因偏振改变而被另一光子散射。这两种效应都会导致强度相关(或非线性)的光学旋转。在外差实验中,使用旋光仪测量溶液的非线性旋光度。在缺少接近激光频率的吸收带的分子中未发现非线性旋光。在所研究的三个嘧啶核苷中,它们确实具有这样的吸收带,鉴定出非线性旋光,该旋光随着每个激光脉冲而累积。该作用持续时间约为数秒,并且是分子特征。 (c)2007年美国物理研究所。

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