arXiv · cond-mat/0104144
Symmetry-breaking and chaos in electron transport in semiconductor superlattices
Abstract
We study the motion of electrons in a single miniband of a semiconductor superlattice driven by THz electric field polarized along the growth direction. We work in the semiclassical balance-equation model, including different elastic and inelastic scattering rates, and incorporating the self-consistent electric field generated by electron motion. We explore regions of complex dynamics, which can include chaotic behaviour and symmetry-breaking. We estimate the magnitudes of dc current and dc voltage that spontaneously appear in regions of broken-symmetry for parameters characteristic of modern semiconductor superlattices. This work complements PRL 80(1998)2669 [ cond-mat/9709026 ].
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Kirill N. Alekseev, Ethan H. Cannon, Jonathan C. McKinney, Feodor V. Kusmartsev, David K. Campbell. 2001-04-09. Symmetry-breaking and chaos in electron transport in semiconductor superlattices. https://doi.org/10.1016/s0167-2789(97)00260-1
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