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Optical activity of solids from first principles

Xiaoming Wang, Yanfa Yan

2023Physical review. B./Physical review. B28 citationsDOIOpen Access PDF

Abstract

Within the framework of independent particle approximation, the optical activity tensor of solids is formulated as from different contributions: the magnetic dipole, electric quadrupole, and band dispersion terms. The first two terms have similar counterparts in the theory of finite systems, whereas the last term is unique for crystals. The magnetic dipole and electric quadrupole transition moments are calculated with a sum-over-states formulation. We apply the formulation to calculate and analyze the optical rotation of elemental tellurium and the circular dichroism of the (6,4) carbon nanotube. Decomposed optical activity into different contributions is discussed. The calculated spectra agree well with experiments. As a showcase of achiral crystals, we calculate the optical activity of wurtzite GaN.

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BusinessChemistryPhotorefractive and Nonlinear OpticsPhase-change materials and chalcogenidesTopological Materials and Phenomena
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