Real time dynamics and confinement in the Znschwinger-weyl lattice model for 1+1 QED

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Abstract

We study the out-of-equilibrium properties of 1 + 1 dimensional quantum electrodynamics (QED), discretized via the staggered-fermion Schwinger model with an Abelian Zngauge group. We look at two relevant phenomena: first, we analyze the stability of the Dirac vacuum with respect to particle/antiparticle pair production, both spontaneous and induced by an external electric field; then, we examine the string breaking mechanism. We observe a strong effect of confinement, which acts by suppressing both spontaneous pair production and string breaking into quark/antiquark pairs, indicating that the system dynamics displays a number of out-of-equilibrium features.

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Magnifico, G., Dalmonte, M., Facchi, P., Pascazio, S., Pepe, F. V., & Ercolessi, E. (2020). Real time dynamics and confinement in the Znschwinger-weyl lattice model for 1+1 QED. Quantum, 4. https://doi.org/10.22331/Q-2020-06-15-281

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