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Observation of periodical negative differential conductivity in nanocrystalline silicon/crystalline silicon heterostructures

机译:纳米晶体硅/晶体硅异质结构中周期性负电导率的观察

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We report the observation of periodical negative differential conductivity (NDC) in hydrogenated nanocrystalline silicon/crystalline silicon diode heterostructures by low-temperature current-voltage measurements. The NDC-related series of spike-like current peaks is found to result from the accumulation and depletion of electrons tunnelling through the nanodot layers in the neutral region. The observation has been further supported by the facts of onset-voltage blueshift, number variation in current peaks, and inter-Landau-level tunnelling in the temperature- and magnetic field-dependent experiments. We also discuss the differences between the present periodical NDC and the electric field domain in superlattice structures.
机译:我们报告通过低温电流-电压测量观察到氢化纳米晶硅/晶体硅二极管异质结构中的周期性负微分电导率(NDC)。发现与NDC相关的一系列尖峰状电流峰值是由隧穿穿过中性区中的纳米点层的电子的积累和耗尽导致的。在与温度和磁场有关的实验中,起始电压蓝移,电流峰值的数量变化以及兰道间水平隧穿的事实进一步支持了该观察结果。我们还讨论了当前周期NDC与超晶格结构中电场域之间的差异。

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