Non-local optical response of a multi-phased quantum material
Abstract
Light-matter interaction in quantum materials presents a new paradigm as light can tip the balance between many competing quantum many-body phases to result in new phenomena. Describing the optical response of such materials requires complex models. Here, we develop a non-local model to describe the optical response of a quantum material, 1T-TaS. 1T-TaS is a nearly commensurate charge-density-wave material at room temperature. The competing stacking configurations of the charge domains in this layered material result in significant optical inhomogeneity that necessitates a non-local dielectric function. We experimentally measure the non-local optical response of 1T-TaS films under various illumination intensities and validate our model. The non-local parameter extracted from our measurements sheds light on the competition between the two stacking configurations of 1T-TaS. Our technique of measuring non-local optical response serves as a quick, simple, and non-invasive method to probe the energy landscape of strong correlations in many such quantum materials.
Cite
@article{arxiv.2405.16189,
title = {Non-local optical response of a multi-phased quantum material},
author = {Ding Zhang and Gururaj V. Naik},
journal= {arXiv preprint arXiv:2405.16189},
year = {2024}
}
Comments
7 pages, 4 figures