activity
20082023
most citedHopping conduction in strong electric fields: Negative differential conductivity

24 citations · 45 across the 7 of their papers we have counts for

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Showing cond-mat.dis-nnShow all

5 papers · 1 filter

cond-mat.dis-nn2022★ 8 cited

Quantum states in disordered media. II. Spatial charge carrier distribution

A. V. Nenashev, S. D. Baranovskii, K. Meerholz +1

The space- and temperature-dependent electron distribution is essential for the theoretical description of the opto-electronic properties of disordered semiconduct…

cond-mat.dis-nn2022★ 11 cited

Quantum states in disordered media. I. Low-pass filter approach

F. Gebhard, A. V. Nenashev, K. Meerholz +1

The current burst in research activities on disordered semiconductors calls for the development of appropriate theoretical tools that reveal the features of electron states in rand…

cond-mat.dis-nn2019

Percolation description of charge transport in the random barrier model applied to amorphous oxide semiconductors

S. D. Baranovskii, A. V. Nenashev, J. O. Oelerich +3

Charge transport in amorphous oxide semiconductors is often described as the band transport affected by disorder in the form of random potential barriers (RB). Theoretical studies…

cond-mat.dis-nn2019

Percolation description of charge transport in amorphous oxide semiconductors

A. V. Nenashev, J. O. Oelerich, S. H. M. Greiner +3

The charge transport mechanism in amorphous oxide semiconductors (AOS) is a matter of controversial debates. Most theoretical studies so far neglected the percolation nature of the…

cond-mat.dis-nn2008★ 24 cited

Hopping conduction in strong electric fields: Negative differential conductivity

A. V. Nenashev, F. Jansson, S. D. Baranovskii +3

Effects of strong electric fields on hopping conductivity are studied theoretically. Monte-Carlo computer simulations show that the analytical theory of Nguyen and Shklovskii [Soli…