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Temperature-dependent cyclotron resonance in a hybridized electron-hole system in InAs/GaSb heterostructures

机译:InAs / GaSb异质结构中杂化电子-空穴系统中温度相关的回旋共振

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摘要

Cyclotron resonance measurements are performed as a function of temperature on InAs/GaSb quantum well structures. The effects of electron-hole hybridization on cyclotron resonance are found to be strongly temperature dependent. As the temperature increases, the cyclotron resonance spectra narrow dramatically and multiple splittings due to electron-hole hybridizations disappear. This phenomenon is believed to be due to the classical Coulomb interaction between electrons with different cyclotron effective masses. The influence of the minigap formed due to electron-hole coupling is shown to be particularly important in narrower gap structures where strong thermal excitation of carriers is observed across the minigap. The influence of the minigap on the system is confirmed by the application of large parallel magnetic fields which decouple the electron and hole bands.
机译:回旋加速器共振测量是根据InAs / GaSb量子阱结构上温度的函数进行的。发现电子-空穴杂交对回旋共振的影响与温度密切相关。随着温度的升高,回旋加速器的共振光谱急剧变窄,并且由于电子-空穴杂交而导致的多次分裂消失。该现象被认为是由于具有不同回旋加速器有效质量的电子之间的经典库仑相互作用所致。已显示出由于电子-空穴耦合而形成的微间隙的影响在窄间隙结构中尤为重要,在窄间隙结构中,在整个微间隙中观察到了载流子的强烈热激发。最小间隙对系统的影响通过施加大的平行磁场来确认,该磁场将电子和空穴带解耦。

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