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中国物理学会期刊

CdxHg1-xTe混晶的远红外反射光谱和多振子模型

CSTR: 32037.14.aps.34.56

FAR-INFRARED REFLECTION SPECTRA AND THE MULTIMODE MODEL FOR MIXED CRYSTAL CdxHg1-xTe

CSTR: 32037.14.aps.34.56
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  • 在温度4.2—300K和波数15—450cm-1范围内研究了x=0.18到0.45的不同组份的CdxHg1-xTe样品的远红外反射光谱。实验观察到了类CdTe光学声子反射带的精细结构和低组份样品类HgTe反射带的复杂结构,研究了这些结构对组份和温度的关系,并用多振子模型讨论了反射光谱的这种精细结构。对实验反射光谱用经典的振子匹配方法进行了拟合计算,并从这种拟合运算获得了Cd(x-)Hg1-xTe的远红外介电函数谱及其它光学常数和频率的关系。

     

    Far-infrared reflection spectra in the wavenumber region between 15 to 500 cm-1 are obtained and studied for the mixed crystals CdxHg1-xTe with different compositions from 0.18 to 0.45 at the temperatures between 4.2 to 300 K. In addition to the fine structures of the CdTe-like optical phonon reflection band, the complex structure of the HgTe-like band for the low composition sample has been observed, and the dependences of the spectral structures on the composition and the temperature of the samples have also been investigated. The fine structures of the reflection spectra are explained based on the multimode quasi-harmonic oscillator model.By means of the classical oscillator matching method, the curve-fitting calculations are performed for the experimental reflection spectra, and the dielectric function spectra and other optical constants versus frequencies are obtained from a satisfactory fitting.

     

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