Scattering-controlled transmission resonances and negative differential conductance by field-induced localization in superlattices.

Scattering-controlled transmission resonances and negative differential conductance by field-induced localization in superlattices.
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超晶格中场致局域化的散射控制传输谐振和负微分电导。

DOI:
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发表时间:
1990
影响因子:
8.6
通讯作者:
Cho
Cho
中科院分区:
物理与天体物理1区
文献类型:
--
作者:
Beltram;Capasso;Sivco;Hutchinson;Chu;Cho

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被引文献

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首次观察到超晶格中散射控制的传输共振。这些源于由厚度等于电子相干长度的超晶格子集支持的状态。在较低电场下,由于渐进场感应波函数局域化,还观察到了宽阔的负微分电导区域。这种现象在物理上等同于 Esaki 和 Tsu 于 1970 年预测的布拉格衍射引起的负微分电导
The first observation of scattering-controlled transmission resonances in superlattices is reported. These originate from states supported by subsets of the superlattice of thickness equal to the electron coherence length. At lower electric fields a broad region of negative differential conductance due to progressive field-induced wave-function localization is also observed. This phenomenon is shown to be physically equivalent to the Bragg-diffraction-induced negative differential conductance predicted by Esaki and Tsu in 1970