首页> 外文期刊>The Journal of Chemical Physics >Time-resolved vibrational optical activity measurement by the infrared-visible sum-frequency-generation with circularly polarized infrared light
【24h】

Time-resolved vibrational optical activity measurement by the infrared-visible sum-frequency-generation with circularly polarized infrared light

机译:利用圆偏振红外光产生红外可见和频的时间分辨振动光学活性测量

获取原文
获取原文并翻译 | 示例
           

摘要

A theoretical description of the time-resolved infrared-visible sum-frequency-genertion (IV-SFG) process when the incident infrared pulsed beam is either left- or right-circularly-polarized (CP) is presented. Even for isotropic chiral molecular liquids, the CP IV-SFG polarization does not vanish because the chiral component of the associated response function is nonzero due to the breakdown of the Born-Oppenheimer approximation as well as to the finite polarizability-electric-quadrupole response function, which is a fourth-rank tensor. For a specific perpendicular detection scheme, it is shown that the three different contributions, originated from (1) all-electric-dipole-allowed polarization, (2) polarizability-quadrupole-induced polarization, and (3) interference between the above two polarizations, to the CP IV-SFG signal can be sperately measured. Also the circular intensty difference, which is the difference between the left-CPIV-SFG intensity and the right-CP IV-SFG intensity, is theoretically investigated and found to be solely determined by the interference between the all-electric-dipole-allowed polarization and the polarizability-quadrupole-induced polarization. Thus, it is shown that hte time-resolved CP IV-SFG methods are useful for the investigation of the molecular chirality of liquids and vibrational optical activity.
机译:给出了入射红外脉冲光束为左旋或右旋圆偏振(CP)时的时间分辨红外可见和频产生(IV-SFG)过程的理论描述。即使对于各向同性的手性分子液体,CP IV-SFG极化也不会消失,因为相关的响应函数的手性分量由于Born-Oppenheimer近似的分解以及有限的极化率-四极响应函数而不为零。 ,这是第四张量。对于特定的垂直检测方案,显示出三种不同的贡献,它们来自(1)允许全电偶极子极化,(2)极化率-四极子诱导的极化,以及(3)上述两种极化之间的干扰,可以对CP IV-SFG信号进行精确测量。此外,理论上研究了圆形强度差,即左CPIV-SFG强度和右CP IV-SFG强度之间的差,并且仅由全电偶极子极化之间的干扰确定极化率-四极极化。因此,表明时间分辨的CP IV-SFG方法可用于研究液体的分子手性和振动光学活性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号