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Effect of isotopic mass on the photoluminescence spectra of beta zinc sulfide

机译:同位素质量对β-硫化锌光致发光光谱的影响

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摘要

Zinc sulfide is a wide bandgap semiconductor which crystallizes in either the wurtzite modification (alpha-ZnS), the zincblende modification (beta-ZnS) or as one of several similar tetrahedrally coordinated polytypes. In this work, we report a photoluminescence study of different samples of isotopically pure beta-ZnS crystals, and crystals with the natural isotopic abundances, at 15 and 77 K. The derivatives of the free and bound exciton energies on isotopic mass have been obtained. They allow us to estimate the contribution of the zinc and sulfur vibrations to the bandgap renormalization energy by electronphonon interaction. A two-oscillator model based oil the zinc and sulfur renormalization energies has been used to account for the temperature dependence of the bandgap energy in ZnS. The results are compared with those found for other tetrahedrally coordinated semiconductors. (C) 2004 Elsevier Ltd. All rights reserved.
机译:硫化锌是一种宽带隙半导体,其结晶为纤锌矿变体(α-ZnS),闪锌矿变体(β-ZnS)或几种类似的四面体配位多晶型之一。在这项工作中,我们报告了在15和77 K下对同位素纯的β-ZnS晶体以及具有天然同位素丰度的晶体的不同样品的光致发光研究。已经获得了自由和束缚激子能量对同位素质量的导数。它们使我们能够估计锌和硫振动通过电子声子相互作用对带隙重整化能的贡献。基于锌和硫的重整化能量的两振荡器模型油已用于解释ZnS中带隙能量的温度依赖性。将结果与其他四面体配位半导体的结果进行比较。 (C)2004 Elsevier Ltd.保留所有权利。

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