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Size and randomness effects on the temperature-dependent hopping conductivity of nanocrystalline chains

机译:尺寸和随机性对纳米晶链随温度变化的跳跃电导率的影响

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摘要

Developing a renormalization group approach, we study the hopping conductivity of nanocrystalline chains with different site energies. Exact calculations show that many parameters including nanosizes, randomness of grain distributions, lattice distortions, site energies, transition rates, Fermi energy, and temperature influence the conductivity. Some new singular features, for example the frequency shift, the amplitude fluctuations, and the interchange between "peak" and "valley" behavior of the imaginary part of the conductivity can be caused by certain parameters mentioned above, while the interface distortions modulate mainly the overall amplitudes of the conductivity at the whole frequency region.
机译:开发一种重归一化组方法,我们研究了具有不同位点能量的纳米晶体链的跳跃电导率。精确的计算表明,包括纳米尺寸,晶粒分布的随机性,晶格畸变,位能,跃迁速率,费米能和温度在内的许多参数都会影响电导率。一些新的奇异特征,例如频移,幅度波动以及电导率虚部的“峰”和“谷”行为之间的互换,可能是由上述某些参数引起的,而界面畸变主要调制在整个频率范围内电导率的总振幅。

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