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Magneto-excitons in Cu2O: theoretical model from weak to high magnetic fields

Recent experimental and theoretical work on hydrogen-like absorption spectra of excitons in external magnetic fields revealed new effects when the Coulomb interaction becomes comparable to the magnetic perturbation. We present a theoretical approach that allows for calculation of absorption spectra...

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Published in:New journal of physics 2019-10, Vol.21 (10), p.103012
Main Authors: Zieli ska-Raczy ska, Sylwia, Fishman, Dmitry A, Faugeras, Clément, Potemski, Marek M P, van Loosdrecht, Paul H M, Karpi ski, Karol, Czajkowski, Gerard, Ziemkiewicz, David
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container_issue 10
container_start_page 103012
container_title New journal of physics
container_volume 21
creator Zieli ska-Raczy ska, Sylwia
Fishman, Dmitry A
Faugeras, Clément
Potemski, Marek M P
van Loosdrecht, Paul H M
Karpi ski, Karol
Czajkowski, Gerard
Ziemkiewicz, David
description Recent experimental and theoretical work on hydrogen-like absorption spectra of excitons in external magnetic fields revealed new effects when the Coulomb interaction becomes comparable to the magnetic perturbation. We present a theoretical approach that allows for calculation of absorption spectra for any value of magnetic field. This approach opens the possibility to compute the optical functions i.e. reflectivity, transmission and absorption including the excitonic effects for various strength of external magnetic field.
doi_str_mv 10.1088/1367-2630/ab4633
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subjects Absorption spectra
Excitation spectra
Excitons
Hydrogen storage
Magnetic fields
magneto-absorption
Perturbation
Physics
real density matrix
Rydberg excitons
title Magneto-excitons in Cu2O: theoretical model from weak to high magnetic fields
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