Ordonez Andres F, Smirnova Olga
Max-Born-Institut, 12489 Berlin, Germany.
ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, 08860 Barcelona, Spain.
Phys Chem Chem Phys. 2022 Mar 2;24(9):5720-5728. doi: 10.1039/d1cp05485f.
Chiral molecules ionized by circularly polarized fields produce a photoelectron current orthogonal to the polarization plane. This current has opposite directions for opposite enantiomers and provides an extremely sensitive probe of molecular handedness. Recently, such photoelectron currents have been measured in the strong-field ionization regime, where they may serve as an ultrafast probe of molecular chirality. Here we provide a mechanism for the emergence of such strong-field photoelectron currents in terms of two propensity rules that link the properties of the initial electronic chiral state to the direction of the photoelectron current.
由圆偏振场电离的手性分子会产生与偏振平面正交的光电子电流。对于相反的对映体,该电流方向相反,为分子手性提供了极其灵敏的探测手段。最近,在强场电离区域已测量到这种光电子电流,在该区域它们可用作分子手性的超快探测手段。在此,我们依据两条倾向规则,给出了这种强场光电子电流产生的一种机制,这两条规则将初始电子手性态的性质与光电子电流的方向联系起来。