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Spin in a General Time Varying Magnetic Field: Generalization of the Adiabatic Factorization of Time Evolution

Quantum Physics 2012-07-30 v1 Mathematical Physics math.MP

Abstract

An extension of the adiabatic factorization of the time evolution operator is studied for spin in a general time varying magnetic field B(t)B(t). When B(t)B(t) changes adiabatically, such a factorization reduces to the product of the geometric operator which embodies the Berry phase phenomenon and a usual dynamical operator. For a general time variation of B(t)B(t), there should be another operator N(t)N(t) in the factorization that is related to non-adiabatic transitions. A simple and explicit expression for the instantaneous angular velocity of this operator is derived. This is done in a way that is independent of any specific representation of spin. Two classes of simple conditions are given under which the operator N(t)N(t) can be made explicit. As a special case, a generalization of the traditional magnetic resonance condition is pointed out.

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Cite

@article{arxiv.1207.6497,
  title  = {Spin in a General Time Varying Magnetic Field: Generalization of the Adiabatic Factorization of Time Evolution},
  author = {J. Chee},
  journal= {arXiv preprint arXiv:1207.6497},
  year   = {2012}
}

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10 pages