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Stochastic differential equations for models of non-relativistic matter interacting with quantized radiation fields

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arxiv 1402.2242 v2 pith:626U6JO6 submitted 2014-02-10 math-ph math.MPmath.PR

classification math-phmath.MPmath.PR
keywords stochasticdifferentialequationscasediscussfeynman-kacmatrix-valuedmodel
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We discuss Hilbert space-valued stochastic differential equations associated with the heat semi-groups of the standard model of non-relativistic quantum electrodynamics and of corresponding fiber Hamiltonians for translation invariant systems. In particular, we prove the existence of a stochastic flow satisfying the strong Markov property and the Feller property. To this end we employ an explicit solution ansatz. In the matrix-valued case, i.e., if the electron spin is taken into account, it is given by a series of operator-valued time-ordered integrals, whose integrands are factorized into annihilation, preservation, creation, and scalar parts. The Feynman-Kac formula implied by these results is new in the matrix-valued case. Furthermore, we discuss stochastic differential equations and Feynman-Kac representations for an operator-valued integral kernel of the semi-group. As a byproduct we obtain analogous results for Nelson's model.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. On the Ergodicity of Renormalized Translation-Invariant Nelson-Type Semigroups

    math-ph 2024-12 conditional novelty 7.0 of 10

    For negative coupling, the renormalized non-relativistic and semi-relativistic Nelson semigroups are positivity improving with respect to the Fröhlich cone at every total momentum, proven via Feynman-Kac functional in...

  2. Feynman-Kac formula for fiber Hamiltonians in the relativistic Nelson model in two spatial dimensions

    math-ph 2023-09 unverdicted novelty 4.0 of 10

    Derives new Feynman-Kac formulas for fiber Hamiltonians of the 2D relativistic Nelson model by applying estimates from the authors' recent preprint.

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