Temperature dependence of the radiative recombination time in ZnO nanorods under an external magnetic field of 6 T.

The Temperature dependence of the exciton radiative decay time in ZnO nanorods has been investigated, which is associated with the density of states for the intra-relaxation of thermally excited excitons. The photoluminescence decay time was calibrated by using the photoluminescence intensity in ord...

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Հիմնական հեղինակներ: Lee, W, Kiba, T, Murayama, A, Sartel, C, Sallet, V, Kim, I, Taylor, R, Jho, Y, Kyhm, K
Ձևաչափ: Journal article
Լեզու:English
Հրապարակվել է: Optical Society of American (OSA) 2014
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author Lee, W
Kiba, T
Murayama, A
Sartel, C
Sallet, V
Kim, I
Taylor, R
Jho, Y
Kyhm, K
author_facet Lee, W
Kiba, T
Murayama, A
Sartel, C
Sallet, V
Kim, I
Taylor, R
Jho, Y
Kyhm, K
author_sort Lee, W
collection OXFORD
description The Temperature dependence of the exciton radiative decay time in ZnO nanorods has been investigated, which is associated with the density of states for the intra-relaxation of thermally excited excitons. The photoluminescence decay time was calibrated by using the photoluminescence intensity in order to obtain the radiative decay time. In the absence of an external magnetic field, we have confirmed that the radiative decay time increased with temperature in a similar manner to that seen in bulk material (∼ T1.5). Under an external magnetic field of 6 T parallel to the c-axis, we found that the power coefficient of the radiative decay time with temperature decreased (∼ T1.3) when compared to that in the absence of a magnetic field. This result can be attributed to an enhancement of the effective mass perpendicular to the magnetic field and a redshift of the center-of-mass exciton as a consequence of perturbation effects in the weak-field regime.
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spelling oxford-uuid:00a2f50c-fd1f-4055-a679-4101cde17a8e2022-03-26T08:30:40ZTemperature dependence of the radiative recombination time in ZnO nanorods under an external magnetic field of 6 T.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:00a2f50c-fd1f-4055-a679-4101cde17a8eEnglishSymplectic Elements at OxfordOptical Society of American (OSA)2014Lee, WKiba, TMurayama, ASartel, CSallet, VKim, ITaylor, RJho, YKyhm, KThe Temperature dependence of the exciton radiative decay time in ZnO nanorods has been investigated, which is associated with the density of states for the intra-relaxation of thermally excited excitons. The photoluminescence decay time was calibrated by using the photoluminescence intensity in order to obtain the radiative decay time. In the absence of an external magnetic field, we have confirmed that the radiative decay time increased with temperature in a similar manner to that seen in bulk material (∼ T1.5). Under an external magnetic field of 6 T parallel to the c-axis, we found that the power coefficient of the radiative decay time with temperature decreased (∼ T1.3) when compared to that in the absence of a magnetic field. This result can be attributed to an enhancement of the effective mass perpendicular to the magnetic field and a redshift of the center-of-mass exciton as a consequence of perturbation effects in the weak-field regime.
spellingShingle Lee, W
Kiba, T
Murayama, A
Sartel, C
Sallet, V
Kim, I
Taylor, R
Jho, Y
Kyhm, K
Temperature dependence of the radiative recombination time in ZnO nanorods under an external magnetic field of 6 T.
title Temperature dependence of the radiative recombination time in ZnO nanorods under an external magnetic field of 6 T.
title_full Temperature dependence of the radiative recombination time in ZnO nanorods under an external magnetic field of 6 T.
title_fullStr Temperature dependence of the radiative recombination time in ZnO nanorods under an external magnetic field of 6 T.
title_full_unstemmed Temperature dependence of the radiative recombination time in ZnO nanorods under an external magnetic field of 6 T.
title_short Temperature dependence of the radiative recombination time in ZnO nanorods under an external magnetic field of 6 T.
title_sort temperature dependence of the radiative recombination time in zno nanorods under an external magnetic field of 6 t
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