English

Anomalously Slow Cross Symmetry Phase Relaxation, Thermalized Non-Equilibrated Matter and Quantum Computing Beyond the Quantum Chaos Border

Quantum Physics 2008-12-19 v1 Mesoscale and Nanoscale Physics Nuclear Experiment Nuclear Theory

Abstract

Thermalization in highly excited quantum many-body system does not necessarily mean a complete memory loss of the way the system was formed. This effect may pave a way for a quantum computing, with a large number of qubits n100n\simeq 100--1000, far beyond the quantum chaos border. One of the manifestations of such a thermalized non-equilibrated matter is revealed by a strong asymmetry around 90^\circ c.m. of evaporating proton yield in the Bi(γ\gamma,p) photonuclear reaction. The effect is described in terms of anomalously slow cross symmetry phase relaxation in highly excited quantum many-body systems with exponentially large Hilbert space dimensions. In the above reaction this phase relaxation is about eight orders of magnitude slower than energy relaxation (thermalization).

Keywords

Cite

@article{arxiv.quant-ph/0602224,
  title  = {Anomalously Slow Cross Symmetry Phase Relaxation, Thermalized Non-Equilibrated Matter and Quantum Computing Beyond the Quantum Chaos Border},
  author = {M. Bienert and J. Flores and S. Yu. Kun and T. H. Seligman},
  journal= {arXiv preprint arXiv:quant-ph/0602224},
  year   = {2008}
}

Comments

Published in SIGMA (Symmetry, Integrability and Geometry: Methods and Applications) at http://www.emis.de/journals/SIGMA/