在T=295 K下,n-GaSb远红外反射光谱测定导电性电子浓度

А. Г. Белов, Е. В. Молодцова, С.С. Кормилицина, Р. И. Козлов, Е.О. Журавлев, Степан Андреевич Климин, Надежда Николаевна Новикова, В. А. Яковлев
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摘要

提出了一种分别测定n-GaSb中“轻”电子和“重”电子浓度的方法。它基于对远红外区域反射光谱的分析,考虑了等离子体-声子耦合。通过计算校准曲线,可以利用高能等离子体-声子耦合模式的频率确定GaSb中“轻”电子和“重”电子的浓度。测量了一系列n-GaSb样品在室温下的反射光谱,并测定了“轻”电子和“重”电子的浓度。在室温下对相同的样品进行了电物理范德柏测量。通过比较光学和霍尔数据,确定了“轻”电子和“重”电子的迁移率(参数b)。这种确定参数b值的方法是第一次使用。
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Определение концентрации электронов проводимости в монокриcталлических образцах n-GaSb по спектрам отражения в дальней инфракрасной области при T=295 K
A method is proposed for separately determining the concentrations of "light" and "heavy" electrons in n-GaSb. It is based on the analysis of reflection spectra in the far infrared region, taking into account the plasmon-phonon coupling. Calibration curves have been calculated that allow one to determine the concentrations of "light" and "heavy" electrons in GaSb using the frequency of high-energy coupled plasmon-phonon mode. For a series of n-GaSb samples the reflection spectra were measured and the concentrations of "light" and "heavy" electrons were determined at room temperature. Electrophysical Van der Paw measurements have been performed on the same samples at room temperature. By comparing the optical and Hall data, the ratios of the mobilities of "light" and "heavy" electrons (parameter b) were determined. This method of determining the value of the parameter b is used for the first time.
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