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Complex powers of the wave operator and the spectral action on Lorentzian scattering spaces

Nguyen Viet Dang, Michał Wrochna

2023Journal of the European Mathematical Society14 citationsDOIOpen Access PDF

Abstract

We consider perturbations of Minkowski space as well as more general spacetimes on which the wave operator \square_{g} is known to be essentially self-adjoint. We define complex powers (\square_{g}-i\varepsilon)^{-\alpha} by functional calculus, and show that the trace density exists as a meromorphic function of \alpha . We relate its poles to geometric quantities, in particular to the scalar curvature. The results allow us to formulate a spectral action principle which serves as a simple Lorentzian model for the bosonic part of the Chamseddine–Connes action. Our proof combines microlocal resolvent estimates, including radial propagation estimates, with uniform estimates for the Hadamard parametrix. The arguments work in Lorentzian signature directly and do not rely on transition from the Euclidean setting.

Topics & Concepts

MathematicsParametrixMinkowski spaceHadamard transformResolventOperator (biology)Action (physics)Mathematical analysisD'Alembert operatorPure mathematicsMathematical physicsDifferential operatorSemi-elliptic operatorQuantum mechanicsBiochemistryChemistryGeneRepressorTranscription factorPhysicsAdvanced Operator Algebra ResearchAdvanced Mathematical Physics ProblemsNoncommutative and Quantum Gravity Theories
Complex powers of the wave operator and the spectral action on Lorentzian scattering spaces | Litcius