Biaxial strain tuning of exciton energy and polarization in monolayer WS2

Fuente: arXiv
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Main Authors: Kourmoulakis, G., Michail, A., Paradisanos, I., Marie, X., Glazov, M. M., Jorissen, B., Covaci, L., Stratakis, E., Papagelis, K., Parthenios, J., Kioseoglou, G.
Format: Preprint
Published: 2023
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author Kourmoulakis, G.
Michail, A.
Paradisanos, I.
Marie, X.
Glazov, M. M.
Jorissen, B.
Covaci, L.
Stratakis, E.
Papagelis, K.
Parthenios, J.
Kioseoglou, G.
author_facet Kourmoulakis, G.
Michail, A.
Paradisanos, I.
Marie, X.
Glazov, M. M.
Jorissen, B.
Covaci, L.
Stratakis, E.
Papagelis, K.
Parthenios, J.
Kioseoglou, G.
contents We perform micro-photoluminescence and Raman experiments to examine the impact of biaxial tensile strain on the optical properties of WS2 monolayers. A strong shift on the order of -130 meV per % of strain is observed in the neutral exciton emission at room temperature. Under near-resonant excitation we measure a monotonic decrease in the circular polarization degree under applied strain. We experimentally separate the effect of the strain-induced energy detuning and evaluate the pure effect coming from biaxial strain. The analysis shows that the suppression of the circular polarization degree under biaxial strain is related to an interplay of energy and polarization relaxation channels as well as to variations in the exciton oscillator strength affecting the long-range exchange interaction.
format Preprint
id arxiv_https___arxiv_org_abs_2307_12663
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Biaxial strain tuning of exciton energy and polarization in monolayer WS2
Kourmoulakis, G.
Michail, A.
Paradisanos, I.
Marie, X.
Glazov, M. M.
Jorissen, B.
Covaci, L.
Stratakis, E.
Papagelis, K.
Parthenios, J.
Kioseoglou, G.
Materials Science
Mesoscale and Nanoscale Physics
We perform micro-photoluminescence and Raman experiments to examine the impact of biaxial tensile strain on the optical properties of WS2 monolayers. A strong shift on the order of -130 meV per % of strain is observed in the neutral exciton emission at room temperature. Under near-resonant excitation we measure a monotonic decrease in the circular polarization degree under applied strain. We experimentally separate the effect of the strain-induced energy detuning and evaluate the pure effect coming from biaxial strain. The analysis shows that the suppression of the circular polarization degree under biaxial strain is related to an interplay of energy and polarization relaxation channels as well as to variations in the exciton oscillator strength affecting the long-range exchange interaction.
title Biaxial strain tuning of exciton energy and polarization in monolayer WS2
topic Materials Science
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2307.12663