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Current noise suppression in quantum well infrared photodetectors at low bias voltages

机译:在低偏置电压下量子阱红外光电探测器中的电流噪声抑制

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The power spectrum of current noise in Quantum Well Infrared Photodetectors (QWIP) is calculated considering the smoothing effect of electron Coulomb interaction on the noise to account for the noise suppression observed in QWIP's at low external bias. Actually, when the external voltage is low, it has been shown that the potential at the collector is inverted with respect to the emitter. Such potential distribution gives rise to a longer electron transit through the interelectrodic region. As a result, each electron emitted at the cathode, during the longer transit time through the device, reduces the transmission probability of the emitter barrier and thus increases the waiting time for a subsequent electron emission, which results in a low frequency current noise reduced with respect to the equivalent vacuum tube shot noise 2eI, in agreement with the experimental findings.
机译:考虑到噪声对噪声对噪声抑制的噪声的平滑效果,计算量子阱红外光电探测器(QWIP)中的电流噪声的功率谱进行计算,以考虑在QWIP在低外偏压下观察到的噪声抑制。实际上,当外部电压低时,已经示出了收集器处的电位相对于发射器反转。这种电位分布通过互电电极区域产生更长的电子传输。结果,在阴极上发射的每个电子在通过装置的较长时间期间,降低了发射极屏障的传输概率,从而增加了随后的电子发射的等待时间,这导致低频电流噪声减少尊重等效的真空管射击噪声2EI,同时与实验结果一致。

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