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Random-matrix theories in quantum physics: common concepts
T Guhr, A Müller–Groeling, HA Weidenmüller - Physics Reports, 1998 - Elsevier
We review the development of random-matrix theory (RMT) during the last fifteen years. We
emphasize both the theoretical aspects, and the application of the theory to a number of …
emphasize both the theoretical aspects, and the application of the theory to a number of …
[KİTAP][B] Ultracold Atoms in Optical Lattices: Simulating quantum many-body systems
Quantum computers, though not yet available on the market, will revolutionize the future of
information processing. Quantum computers for special purposes like quantum simulators …
information processing. Quantum computers for special purposes like quantum simulators …
Ultracold atomic gases in optical lattices: mimicking condensed matter physics and beyond
We review recent developments in the physics of ultracold atomic and molecular gases in
optical lattices. Such systems are nearly perfect realisations of various kinds of Hubbard …
optical lattices. Such systems are nearly perfect realisations of various kinds of Hubbard …
Electronic transport in DNA
We study the electronic properties of DNA by way of a tight-binding model applied to four
particular DNA sequences. The charge transfer properties are presented in terms of …
particular DNA sequences. The charge transfer properties are presented in terms of …
[KİTAP][B] Semiclassical theory of mesoscopic quantum systems
K Richter, K Richter - 2000 - Citeseer
Mesoscopic physics has emerged as a new, interdisciplinary field combining concepts of
atomic, molecular, cluster, and condensed-matter physics. On the one hand mesoscopic …
atomic, molecular, cluster, and condensed-matter physics. On the one hand mesoscopic …
Interaction-induced delocalization of two particles in a random potential: Scaling properties
F von Oppen, T Wettig, J Müller - Physical review letters, 1996 - APS
The localization length ξ 2 for coherent propagation of two interacting particles in a random
potential is studied using a novel and efficient numerical method. We find that the …
potential is studied using a novel and efficient numerical method. We find that the …
Frequency doubling of Bloch oscillations for interacting electrons in a static electric field
We study numerically the effect of the on-site Hubbard interaction U on the dynamics of two
electrons subjected to an external electric field and restricted to move in a linear chain with …
electrons subjected to an external electric field and restricted to move in a linear chain with …
Dynamical localization of coupled relativistic kicked rotors
A periodically driven rotor is a prototypical model that exhibits a transition to chaos in the
classical regime and dynamical localization (related to Anderson localization) in the …
classical regime and dynamical localization (related to Anderson localization) in the …
Oscillations for Correlated Electron Pairs in Disordered Mesoscopic Rings
The full spectrum of two interacting electrons in a disordered mesoscopic one-dimensional
ring threaded by a magnetic flux is calculated numerically. For ring sizes far exceeding the …
ring threaded by a magnetic flux is calculated numerically. For ring sizes far exceeding the …
No enhancement of the localization length for two interacting particles in a random potential
RA Römer, M Schreiber - Physical review letters, 1997 - APS
We study two interacting particles in a random potential chain by means of the transfer
matrix method. The dependence of the two-particle localization length λ 2 on disorder and …
matrix method. The dependence of the two-particle localization length λ 2 on disorder and …