DOE OSTI · 2484072
Finite-temperature instantons from first principles
Abstract
We derive the finite-temperature quantum-tunneling rate from first principles. The tunneling rate depends on both temperature and time. We demonstrate that the relevant instantons should, therefore, be defined on a Keldysh-Schwinger contour, and we discuss how the familiar Euclidean time result arises from the limit of large physical times. We identify distinct behavior in the high- and low-temperature limits, incorporating effects from background fields. We construct a consistent perturbative scheme that incorporates large finite-temperature effects. Published by the American Physical Society 2024
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Steingasser, Thomas (ORCID:0000000217262117), König, Morgane, Kaiser, David I. (ORCID:0000000250546744). 2024-12-30. Finite-temperature instantons from first principles. https://doi.org/10.1103/physrevd.110.l111902
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