A Temperature Study of High‐n$n$ Rydberg States in Cu2O${\rm Cu}_2{\rm O}$

Julian Heckötter, Binodbihari Panda, Katharina Brägelmann, Marc Aßmann, Manfred Bayer
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Abstract

The temperature dependence of Rydberg excitons in with principal quantum numbers is investigated for bath temperatures between 1.3 and 50 K. The energy shift of Rydberg exciton lines allows us to perform a precise measurement of the band gap as a function of temperature. The phonon shows a dominant contribution to the temperature shift of the band gap. The optical properties of Rydberg excitons are analyzed for different temperatures and discussed in the context of phonon scattering as well as thermal ionization of impurities and compared to earlier descriptions in Ref. [1]. The maximum principal quantum number as a function of temperature in crystals of different quality is studied and compared. The observations are correlated to photoluminescence spectra of impurities at different temperatures.
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Cu2O${rm Cu}_2{rm O}$ 中高 n$n$ Rydberg 状态的温度研究
通过研究雷德贝格激子线的能量移动,我们可以精确测量出带隙与温度的关系。声子对带隙的温度偏移起着主导作用。我们分析了不同温度下 Rydberg 激子的光学特性,结合声子散射和杂质热电离进行了讨论,并与参考文献 [1] 中的早期描述进行了比较。[1].研究并比较了不同质量晶体中最大主量子数与温度的函数关系。观察结果与不同温度下杂质的光致发光光谱相关联。
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