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Autores principales: Bulyk, L. -I., Wlodarczyk, D., Nagorny, S. S., Nahorna, V. V., Wang, P., Suchocki, A.
Formato: Preprint
Publicado: 2024
Materias:
Acceso en línea:https://arxiv.org/abs/2412.20229
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author Bulyk, L. -I.
Wlodarczyk, D.
Nagorny, S. S.
Nahorna, V. V.
Wang, P.
Suchocki, A.
author_facet Bulyk, L. -I.
Wlodarczyk, D.
Nagorny, S. S.
Nahorna, V. V.
Wang, P.
Suchocki, A.
contents The luminescence and Raman spectra of the Cs2ZrCl6 crystal in a wide range of pressures were studied in this work for the first time. Luminescence measurements were performed up to 10 GPa, while the Raman spectra were measured up to 20 GPa. The luminescence data revealed a linear blue shift of the emission maximum from about 2.5 eV at ambient pressure to 3.1 eV at 5 GPa and a strong intensity quenching. The indirect-to-direct bandgap transition at about 5 GPa, a phenomenon previously predicted only theoretically, was used to explain the strong quenching of the luminescence. This model was confirmed by fitting luminescence intensity data and analysis of the luminescence decay kinetics, which exhibited a shortening of the pulse decay time with the pressure increase. Raman spectra confirmed the stability of Cs2ZrCl6 up to 20 GPa and showed no evidence of the pressure-induced structural phase transitions. An energetic scheme of excitonic levels, which takes into account the indirect-to-direct band gasp transition, was proposed to explain the rapid luminescence quenching with increasing pressure.
format Preprint
id arxiv_https___arxiv_org_abs_2412_20229
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Luminescence of the Cs2ZrCl6 under high pressure
Bulyk, L. -I.
Wlodarczyk, D.
Nagorny, S. S.
Nahorna, V. V.
Wang, P.
Suchocki, A.
Materials Science
The luminescence and Raman spectra of the Cs2ZrCl6 crystal in a wide range of pressures were studied in this work for the first time. Luminescence measurements were performed up to 10 GPa, while the Raman spectra were measured up to 20 GPa. The luminescence data revealed a linear blue shift of the emission maximum from about 2.5 eV at ambient pressure to 3.1 eV at 5 GPa and a strong intensity quenching. The indirect-to-direct bandgap transition at about 5 GPa, a phenomenon previously predicted only theoretically, was used to explain the strong quenching of the luminescence. This model was confirmed by fitting luminescence intensity data and analysis of the luminescence decay kinetics, which exhibited a shortening of the pulse decay time with the pressure increase. Raman spectra confirmed the stability of Cs2ZrCl6 up to 20 GPa and showed no evidence of the pressure-induced structural phase transitions. An energetic scheme of excitonic levels, which takes into account the indirect-to-direct band gasp transition, was proposed to explain the rapid luminescence quenching with increasing pressure.
title Luminescence of the Cs2ZrCl6 under high pressure
topic Materials Science
url https://arxiv.org/abs/2412.20229