Information entropy and level-spacing distribution in single carrier two-dimensional quantum dots are analyzed as functions of the location of a repulsive impurity centre and the strength of its interaction with the carrier electron. Quantum adiabatic switching is used to monitor the transition to quantum chaos with two different choices of the unperturbed hamiltonian
We investigate the effect of spatial symmetries on phase coherent electronic transport through chaot...
17 pages, 4 figures,We use random matrix models to investigate the ground state energy of electrons ...
Contains table of contents for Section 2, description of one research project and a list of publicat...
We report the effects of on- and off-center attractive impurities on regular parabolic dots and thei...
A time-dependent quantum adiabatic switching algorithm is exploited to determine the eigenstates of ...
We present a complete classification of the electron-electron interaction in chaotic quantum dots ba...
The energy level structure of an interacting system of electrons is analysed. The model chosen descr...
We study ground states of interacting electrons in classically chaotic quantum dots using exact di...
Despite considerable work on the energy-level and wavefunction statistics of disordered quantum syst...
Chaos sets a fundamental limit to quantum-information processing schemes. We study the onset of chao...
We propose an information-theoretic model to describe the common features of typical chaotic scatter...
In this article we analize statistical distributions of nearest-neighbour spacings between energy le...
We study influence of electron-electron interaction on statistics of Coulomb blockade peak spacings ...
Von Neuman-Shannon entropy is zero for a pure state and remains so at every stage of its unitary evo...
It is well established that physical systems exhibit both ordered and chaotic behavior. The chaotic ...
We investigate the effect of spatial symmetries on phase coherent electronic transport through chaot...
17 pages, 4 figures,We use random matrix models to investigate the ground state energy of electrons ...
Contains table of contents for Section 2, description of one research project and a list of publicat...
We report the effects of on- and off-center attractive impurities on regular parabolic dots and thei...
A time-dependent quantum adiabatic switching algorithm is exploited to determine the eigenstates of ...
We present a complete classification of the electron-electron interaction in chaotic quantum dots ba...
The energy level structure of an interacting system of electrons is analysed. The model chosen descr...
We study ground states of interacting electrons in classically chaotic quantum dots using exact di...
Despite considerable work on the energy-level and wavefunction statistics of disordered quantum syst...
Chaos sets a fundamental limit to quantum-information processing schemes. We study the onset of chao...
We propose an information-theoretic model to describe the common features of typical chaotic scatter...
In this article we analize statistical distributions of nearest-neighbour spacings between energy le...
We study influence of electron-electron interaction on statistics of Coulomb blockade peak spacings ...
Von Neuman-Shannon entropy is zero for a pure state and remains so at every stage of its unitary evo...
It is well established that physical systems exhibit both ordered and chaotic behavior. The chaotic ...
We investigate the effect of spatial symmetries on phase coherent electronic transport through chaot...
17 pages, 4 figures,We use random matrix models to investigate the ground state energy of electrons ...
Contains table of contents for Section 2, description of one research project and a list of publicat...