Theoretical investigations of electron paramagnetic resonance g factors in ZnSe:Ti 2+ , CdTe:Ti 2+ and ZnSe:V 3+ crystals

The electron paramagnetic resonance (EPR) g -factor formulas are constructed for ZnSe:Ti 2+ , CdTe:Ti 2+ and ZnSe:V 3+ crystals based on the contributions of the charge-transfer levels and the spin-orbit coupling effect of the central ion and the ligands. The EPR g factors are calculated from these...

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Veröffentlicht in:Journal of applied crystallography 2012-10, Vol.45 (5), p.972-975
Hauptverfasser: Zhu, Lianxuan, Wang, Minjie
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Wang, Minjie
description The electron paramagnetic resonance (EPR) g -factor formulas are constructed for ZnSe:Ti 2+ , CdTe:Ti 2+ and ZnSe:V 3+ crystals based on the contributions of the charge-transfer levels and the spin-orbit coupling effect of the central ion and the ligands. The EPR g factors are calculated from these formulas, and the calculated values agree well with the experimental ones. The contribution rates of the charge-transfer levels are 10.1, 7.6 and 24.9% for ZnSe:Ti 2+ , CdTe:Ti 2+ and ZnSe:V 3+ crystals, respectively. The g factors obtained from the one-spin-orbit-parameter model are also given for comparison.
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The EPR g factors are calculated from these formulas, and the calculated values agree well with the experimental ones. The contribution rates of the charge-transfer levels are 10.1, 7.6 and 24.9% for ZnSe:Ti 2+ , CdTe:Ti 2+ and ZnSe:V 3+ crystals, respectively. 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The EPR g factors are calculated from these formulas, and the calculated values agree well with the experimental ones. The contribution rates of the charge-transfer levels are 10.1, 7.6 and 24.9% for ZnSe:Ti 2+ , CdTe:Ti 2+ and ZnSe:V 3+ crystals, respectively. The g factors obtained from the one-spin-orbit-parameter model are also given for comparison.</abstract><doi>10.1107/S0021889812034528</doi></addata></record>
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title Theoretical investigations of electron paramagnetic resonance g factors in ZnSe:Ti 2+ , CdTe:Ti 2+ and ZnSe:V 3+ crystals
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