Rouxel Jérémy R, Nam Yeonsig, Chernyak Vladimir Y, Mukamel Shaul
Chemical Sciences and Engineering Division, Argonne National Laboratory, Lemont, IL 60439.
Wayne State University, Detroit, MI 48202.
Proc Natl Acad Sci U S A. 2024 Jun 4;121(23):e2402660121. doi: 10.1073/pnas.2402660121. Epub 2024 May 31.
Molecular chirality has long been monitored in the frequency domain in the ultraviolet, visible, and infrared regimes. Recently developed time-domain approaches can detect time-dependent chiral dynamics by enhancing intrinsically weak chiral signals. Even-order nonlinear signals in chiral molecules have gained attention thanks to their existence in the electric dipole approximation, without relying on the weaker higher-order multipole interactions. We illustrate the optimization of temporal polarization pulse-shaping in various frequency ranges (infrared/optical and optical/X ray) to enhance chiral nonlinear signals. These signals can be recast as an overlap integral of matter and field pseudoscalars which contain the relevant chiral information. Simulations are carried out for second- and fourth-order nonlinear spectroscopies in L-tryptophan.
长期以来,分子手性一直是在紫外、可见和红外波段的频域中进行监测的。最近开发的时域方法可以通过增强本质上微弱的手性信号来检测随时间变化的手性动力学。手性分子中的偶数阶非线性信号因其存在于电偶极近似中而受到关注,无需依赖较弱的高阶多极相互作用。我们展示了在各种频率范围(红外/光学和光学/X射线)中对时间偏振脉冲整形的优化,以增强手性非线性信号。这些信号可以重铸为包含相关手性信息的物质和场赝标量的重叠积分。对L-色氨酸的二阶和四阶非线性光谱进行了模拟。