Quantum dynamics of cosmological particle production: interacting quantum field theories with matrix product states
Budd E, Florio A, Frenklakh D, Mukherjee S (2026)
Journal of High Energy Physics (4): 183.
Zeitschriftenaufsatz
| Veröffentlicht | Englisch
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Autor*in
Budd, Evan;
Florio, AdrienUniBi;
Frenklakh, David;
Mukherjee, Swagato
Abstract / Bemerkung
Understanding real-time dynamics of interacting quantum fields in curved space-time remains a major theoretical challenge. We employ tensor network methods to study such dynamics using interacting scalar and gauge theories in 1+1 spacetime dimensions, subject to a quench modeling a homogeneously expanding gravitational background. The models considered are the scalar lambda phi 4 theory and the Schwinger model, i.e. a Dirac fermion coupled to a U(1) gauge field which is equivalent via bosonization to a scalar field with a cosine self-interaction. In the free scalar limit, both theories reproduce known analytical results, providing a nontrivial numerical validation of bosonization in curved spacetime for the Schwinger model. Our central finding is that self-interactions lead to a suppression of gravitational particle production compared to the free-field case, as evidenced by two-point functions and the spectra of produced particles. We further examine the behavior of entanglement generation and find that interactions suppress entanglement growth in the lambda phi 4 theory, while in the Schwinger model, the interplay between suppressed particle production and enhanced inter-particle correlations leads to more complex entanglement behavior. Our results pave the way for further explorations of nonperturbative quantum real-time dynamics of interacting scalar and gauge theories in arbitrary gravitational backgrounds.
Stichworte
Early Universe Particle Physics;
Field Theories in Lower Dimensions;
Lattice Quantum Field Theory;
Non-Equilibrium Field Theory
Erscheinungsjahr
2026
Zeitschriftentitel
Journal of High Energy Physics
Ausgabe
4
Art.-Nr.
183
eISSN
1029-8479
Page URI
https://pub.uni-bielefeld.de/record/3016649
Zitieren
Budd E, Florio A, Frenklakh D, Mukherjee S. Quantum dynamics of cosmological particle production: interacting quantum field theories with matrix product states. Journal of High Energy Physics. 2026;(4): 183.
Budd, E., Florio, A., Frenklakh, D., & Mukherjee, S. (2026). Quantum dynamics of cosmological particle production: interacting quantum field theories with matrix product states. Journal of High Energy Physics(4), 183. https://doi.org/10.1007/JHEP04(2026)183
Budd, Evan, Florio, Adrien, Frenklakh, David, and Mukherjee, Swagato. 2026. “Quantum dynamics of cosmological particle production: interacting quantum field theories with matrix product states”. Journal of High Energy Physics, no. 4: 183.
Budd, E., Florio, A., Frenklakh, D., and Mukherjee, S. (2026). Quantum dynamics of cosmological particle production: interacting quantum field theories with matrix product states. Journal of High Energy Physics:183.
Budd, E., et al., 2026. Quantum dynamics of cosmological particle production: interacting quantum field theories with matrix product states. Journal of High Energy Physics, (4): 183.
E. Budd, et al., “Quantum dynamics of cosmological particle production: interacting quantum field theories with matrix product states”, Journal of High Energy Physics, 2026, : 183.
Budd, E., Florio, A., Frenklakh, D., Mukherjee, S.: Quantum dynamics of cosmological particle production: interacting quantum field theories with matrix product states. Journal of High Energy Physics. : 183 (2026).
Budd, Evan, Florio, Adrien, Frenklakh, David, and Mukherjee, Swagato. “Quantum dynamics of cosmological particle production: interacting quantum field theories with matrix product states”. Journal of High Energy Physics 4 (2026): 183.
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