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Quantum point contact in a magnetic field: Far-infrared resonant heating observed in photoconductivity

机译:磁场中的量子点接触:在光电导中观察到远红外共振加热

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摘要

We report on the far-infrared photoresponse of a quantum point contact device fabricated on a top-gated GaAs/AlGaAs heterostructure. The top-gated architecture avoids the disorder built into conventional modulation-doped structures. We observe a distinctive far-infrared magneto-photoresponse. This depends on the wavelength of the radiation and on the carrier density, which is controlled by the gate voltage. We conclude by comparison with transport data that the oscillations observed in photoconductivity and which are centred around the cyclotron energy arise from the resonant heating of electrons by the far-infrared radiation.
机译:我们报告了在顶部门GaAs / AlGaAs异质结构上制造的量子点接触装置的远红外光响应。顶级的体系结构避免了内置于常规调制掺杂结构中的混乱。我们观察到了独特的远红外磁光响应。这取决于辐射的波长和由栅极电压控制的载流子密度。通过与传输数据进行比较,我们得出结论,在光电导中观察到的并且以回旋加速器能量为中心的振荡是由远红外辐射对电子的共振加热引起的。

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