When quantized, traces of classically chaotic single-particle systems include eigenvalue statistics and scars in eigenfuntions. Since 2001, many theoretical and experimental works have argued that classically chaotic single-electron dynamics influences and controls collective electron transport. For transport in semiconductor superlattices under tilted magnetic and electric fields, these theories rely on a reduction to a one-dimensional self-consistent drift model. A two-dimensional theory based on self-consistent Boltzmann transport does not support that single-electron chaos influences collective transport. This theory agrees with existing experimental evidence of current self-oscillations, predicts spontaneous collective chaos via a peri...
We study the motion of electrons in a single miniband of a semiconductor superlattice drive...
In this thesis, we describe, both semiclassically and quantum mechanically, the single-particle and ...
Quantum superlattice with a narrow energy band is an artificial semiconductor structure demonstratin...
When quantized, traces of classically chaotic single-particle systems include eigenvalue statistics ...
We study the effects of dissipation on electron transport in a semiconductor superlattice with an ap...
We address the enhancement of electron transport in semiconductor superlattices that occurs in combi...
In this thesis, we investigate the collective electron dynamics in single and coupled superlattice s...
We study the effects of dissipation and noise on chaotic electron dynamics, which accompany charge t...
We address the increase of electron drift velocity that arises in semiconductor superlattices (SLs) ...
We study the motion of electrons in a single miniband of a semiconductor superlattice driven by THz ...
We show that resonant electron transport in semiconductor superlattices with an applied electric and...
We address the increase of electron drift velocity that arises in semiconductor superlattices (SLs) ...
We explore a new regime of hot carrier dynamics, in which electrons in a superlattice miniband exhib...
In this thesis, I present a semiclassical and quantum mechanical study of a biased superlattice with...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
We study the motion of electrons in a single miniband of a semiconductor superlattice drive...
In this thesis, we describe, both semiclassically and quantum mechanically, the single-particle and ...
Quantum superlattice with a narrow energy band is an artificial semiconductor structure demonstratin...
When quantized, traces of classically chaotic single-particle systems include eigenvalue statistics ...
We study the effects of dissipation on electron transport in a semiconductor superlattice with an ap...
We address the enhancement of electron transport in semiconductor superlattices that occurs in combi...
In this thesis, we investigate the collective electron dynamics in single and coupled superlattice s...
We study the effects of dissipation and noise on chaotic electron dynamics, which accompany charge t...
We address the increase of electron drift velocity that arises in semiconductor superlattices (SLs) ...
We study the motion of electrons in a single miniband of a semiconductor superlattice driven by THz ...
We show that resonant electron transport in semiconductor superlattices with an applied electric and...
We address the increase of electron drift velocity that arises in semiconductor superlattices (SLs) ...
We explore a new regime of hot carrier dynamics, in which electrons in a superlattice miniband exhib...
In this thesis, I present a semiclassical and quantum mechanical study of a biased superlattice with...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
We study the motion of electrons in a single miniband of a semiconductor superlattice drive...
In this thesis, we describe, both semiclassically and quantum mechanically, the single-particle and ...
Quantum superlattice with a narrow energy band is an artificial semiconductor structure demonstratin...