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Homological Quantum Mechanics

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arxiv 2112.11495 v2 pith:MRVRFZ7H submitted 2021-12-21 hep-th math-phmath.MPquant-ph

classification hep-thmath-phmath.MPquant-ph
keywords quantumalgebracohomologyfunctionalfunctionsharmonichomotopymechanics
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We provide a formulation of quantum mechanics based on the cohomology of the Batalin-Vilkovisky (BV) algebra. Focusing on quantum-mechanical systems without gauge symmetry we introduce a homotopy retract from the chain complex of the harmonic oscillator to finite-dimensional phase space. This induces a homotopy transfer from the BV algebra to the algebra of functions on phase space. Quantum expectation values for a given operator or functional are computed by the function whose pullback gives a functional in the same cohomology class. This statement is proved in perturbation theory by relating the perturbation lemma to Wick's theorem. We test this method by computing two-point functions for the harmonic oscillator for position eigenstates and coherent states. Finally, we derive the Unruh effect, illustrating that these methods are applicable to quantum field theory.

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  1. Off-Shell Quantum Mechanics as Factorization Algebras on Intervals

    hep-th 2024-12 conditional novelty 6.0 of 10

    The off-shell factorization algebra of quantum observables for the harmonic oscillator and spin-1/2 system is quasi-isomorphic to the standard on-shell Weyl/Pauli factorization algebra, including state spaces on bound...

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