English

Precise coupling terms in adiabatic quantum evolution: The generic case

Mathematical Physics 2009-11-10 v1 Classical Analysis and ODEs math.MP

Abstract

For multi-level time-dependent quantum systems one can construct superadiabatic representations in which the coupling between separated levels is exponentially small in the adiabatic limit. Based on results from [BeTe1] for special Hamiltonians we explicitly determine the asymptotic behavior of the exponentially small coupling term for generic two-state systems with real-symmetric Hamiltonian. The superadiabatic coupling term takes a universal form and depends only on the location and the strength of the complex singularities of the adiabatic coupling function. As shown in [BeTe1], first order perturbation theory in the superadiabatic representation then allows to describe the time-development of exponentially small adiabatic transitions and thus to rigorously confirm Michael Berry's [Ber] predictions on the universal form of adiabatic transition histories.

Keywords

Cite

@article{arxiv.math-ph/0411083,
  title  = {Precise coupling terms in adiabatic quantum evolution: The generic case},
  author = {Volker Betz and Stefan Teufel},
  journal= {arXiv preprint arXiv:math-ph/0411083},
  year   = {2009}
}

Comments

30 pages, 1 figure