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物理学报  2010 

Eeffects of split-level energy on optoelectronic transport in nanocrystalline silicon
纳米硅结构中分裂能级对光电输运特性的影响

Keywords: photocurrent,optoelectronic transport,resonant tunneling,nanodot
光电流
,光电输运,共振隧穿,纳米点

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Abstract:

Considering the coexisting of electron resonant tunneling and miniband transport processes in a split-level energy system, and the effect of photogenerated carrier, we propose an optoelectronic transport theoretical model for the nanosilicon structure. We employ this model to calculate current density, electric field and electron density distribution under illumination, and the results show that resonant tunneling plays a major role in transporting the photogenerated electrons in a nanosilicon structure. Furthermore, we study the relationship between the photocurrent and the absorption coefficients, the applied bias, and the number of nanolayers. It is found that under certain conditions, hopping phenomenon occurs with photocurrent increasing, which is due to the redistribution of electric field inside the nanosilicon structure.

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