Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/11282
Title: Stable causality and microcausality for Drummond–Hathrell photons
Authors: DEB, MADHUKAR
DESAI, JAY
GHOSH, DIPTIMOY
Dept. of Physics
Keywords: Classical Theories of Gravity
Effective Field Theories
2026-JUN-WEEK2
TOC-JUN-2026
2026
Issue Date: May-2026
Publisher: Springer Nature
Citation: Journal of High Energy Physics, 2026(05), 311.
Abstract: Local superluminal photon propagation arises at in the Drummond Hathrell (DH) effective action obtained by integrating out the electron in QED coupled to gravity. Whether such superluminality implies a genuine violation of causality in curved spacetime is subtle and remains conceptually nontrivial. In this work we revisit this question using two complementary and largely symmetry-independent diagnostics. First, we analyse the global causal structure of the effective (optical) metric governing DH photon propagation and identify conditions under which it remains stably causal, thereby excluding the formation of closed causal curves. Second, from a quantum-field-theoretic perspective, we examine microcausality by treating the gravitational background as a fixed Lorentz-breaking field and applying flat-spacetime analyticity bounds to the photon commutator within the geometric-optics regime of the EFT. For two representative examples, a circular photon orbit in Schwarzschild and a linear trajectory in a two-black-hole geometry, we find that, within the regime of validity of the DH effective theory, both diagnostics indicate that the superluminal photon propagation is causally benign. Our results do not constitute a general definition of microcausality in curved spacetime, but provide a controlled and instructive check of causal consistency for EFT superluminality in gravitational backgrounds.
URI: https://doi.org/10.1007/JHEP05(2026)311
http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/11282
ISSN: 1029-8479
Appears in Collections:JOURNAL ARTICLES

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