Related Experiment Video
Updated: Oct 27, 2025

An Electrochemical Cholesteric Liquid Crystalline Device for Quick and Low-Voltage Color Modulation
Published on: February 27, 2019
Electronic Currents Induced by Optical Fields and Rotatory Power Density in Chiral Molecules
Francesco Ferdinando Summa1, Guglielmo Monaco1, Riccardo Zanasi1
1Dipartimento di Chimica e Biologia "A. Zambelli", Università Degli Studi di Salerno, via Giovanni Paolo II 132, 84084 Fisciano, Italy.
Abstract:
The electric dipole-magnetic dipole polarizability tensor κ', introduced to interpret the optical activity of chiral molecules, has been expressed in terms of a series of density functions kαβ', which can be integrated all over the three-dimensional space to evaluate components καβ' and trace καα'. A computational approach to kαβ', based on frequency-dependent electronic current densities induced by monochromatic light shining on a probe molecule, has been developed. The dependence of kαβ' on the origin of the coordinate system has been investigated in connection with the corresponding change of καβ'. It is shown that only the trace kαα' of the density function defined via dynamic current density evaluated using the continuous translation of the origin of the coordinate system is invariant of the origin. Accordingly, this function is recommended as a tool that is quite useful for determining the molecular domains that determine optical activity to a major extent. A series of computations on the hydrogen peroxide molecule, for a number of different HO-OH dihedral angles, is shown to provide a pictorial documentation of the proposed method.
Related Concept Videos
Properties of Enantiomers and Optical Activity
Induced Electric Dipoles
Since the absolute value of potential energy holds no physical meaning, its zero value can be chosen as per...
π Electron Effects on Chemical Shift: Overview
Chirality in Nature
Potential Due to a Polarized Object
π Electron Effects on Chemical Shift: Aromatic and Antiaromatic Compounds

