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Effects of inelastic scattering on interband tunneling in GaSb/AlSb/InAs/GaSb/AlSb/lnAs broken-gap interband tunneling structures

机译:非弹性散射对GaSb / AlSb / InAs / GaSb / AlSb / lnAs断裂间隙带间隧穿结构中带间隧穿的影响

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Effects of inelastic scattering on interband tunneling in GaSb/AlSb/InAs/GaSb/AlSb/InAs BGIT's are investigated. The broadening mechanisms due to inelastic scattering are incorporated into the interband tunneling theory. The transmission and reflection coefficients are calculated with the aid of a three-band model, in which the conduction, light-hole, and split-off bands are coupled with one another. It is found that the inelastic scattering lowers the transmission peak and broadens the full-width at half-maximum, resulting in the decrease of the tunneling current. The calculated tunneling current due to inelastic scattering is found to have better agreement with the experiments. In addition, as the valley current plays an important role in the peak-to-valley current ratio (PVR), we then try to deduce the origin of the valley currents. The thermionic current is included in the valley current to estimate the peak-to-valley current ratio. The thermionic component from the GaSb well has important contribution to the valley current in the studied structures. The peak-to-valley current ratio is also estimated and found to have better agreement with the experiment when the inelastic scattering is considered.
机译:研究了GaSb / AlSb / InAs / GaSb / AlSb / InAs BGIT中非弹性散射对带间隧穿的影响。由于非弹性散射而导致的展宽机制被纳入带间隧穿理论。借助三波段模型计算透射系数和反射系数,在该模型中,导带,光孔和分离带相互耦合。发现非弹性散射降低了传输峰值,并在半最大值处加宽了全宽度,从而导致隧穿电流减小。发现由于非弹性散射而计算出的隧穿电流与实验具有更好的一致性。另外,由于谷值电流在峰谷电流比(PVR)中起着重要作用,因此我们尝试推论出谷值电流的起源。谷值电流中包含热电子电流,以估算峰谷电流比。 GaSb井中的热电子成分对所研究结构中的谷电流有重要贡献。当考虑非弹性散射时,也可以估计峰谷电流比,发现与实验具有更好的一致性。

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