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Quark and Gluon Production from a Boost-invariantly Expanding Color Electric Field

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arxiv 1609.06189 v3 pith:62QLQU4L submitted 2016-09-19 nucl-th hep-ph

classification nucl-thhep-ph
keywords colorexpandingfieldproductionquarkgluonspectraclassical
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Particle production from an expanding classical color electromagnetic field is extensively studied, motivated by the early stage dynamics of ultra-relativistic heavy ion collisions. We develop a formalism at one-loop order to compute the particle spectra by canonically quantizing quark, gluon and ghost fluctuations under the presence of such an expanding classical color background field; the canonical quantization is done in the $\tau$-$\eta$ coordinates in order to take into account manifestly the expanding geometry. As a demonstration, we model the expanding classical color background field by a boost-invariantly expanding homogeneous color electric field with lifetime $T$, for which we obtain analytically the quark and gluon production spectra by solving the equations of motion of QCD non-perturbatively with respect to the color electric field. In this paper we study (i) finite lifetime effect which is found to modify significantly the particle spectra from those expected from the Schwinger formula; (ii) the difference between the quark and gluon production; and (iii) the quark mass dependence of the production spectra. Implications of these results to ultra-relativistic heavy ion collisions are also discussed.

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  1. Non-perturbative quark production and transport in the evolving glasma: the WAGASHI event generator

    hep-ph 2026-08 conditional novelty 6.0 of 10

    Schwinger pair production in the evolving glasma generates hundreds of quarks and antiquarks per unit rapidity in central Pb-Pb collisions, with momentum broadening and spin randomization before hydrodynamics begins.

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