Magnetic flux loop in high-energy heavy-ion collisions
arXiv:1302.2064 · doi:10.1103/PhysRevD.88.054016
Abstract
We consider the expectation value of a magnetic flux loop in the immediate forward light cone of collisions of heavy nuclei at high energies. Such collisions are characterized by a non-linear scale Q_s where color fields become strong. We find that loops of area greater than ~2/Q_s^2 exhibit area law behavior, which determines the scale of elementary flux excitations ("vortices"). We also estimate the magnetic string tension, sigma_M = 0.12 Q_s^2. By the time t ~ 1/Q_s even small loops satisfy an area law. We describe corrections to the propagator of semi-hard gluons at very early times in the background of fluctuating magnetic fields.
4 pages, 5 figures; v2: added plot of Z(N) part of loop in fig.1; v3: added magnetic loop for asymmetric projectile/target saturation momenta, estimate of vortex density, and an appendix; v4: corrected outline of perturbative calculation of Wilson loop; to appear in PRD
References in corpus (8)
- Some Features of the Glasma
- Wilson line correlator in the MV model: relating the glasma to deep inelastic scattering
- Bottom-up isotropization in classical-statistical lattice gauge theory
- Two-gluon correlations and initial conditions for small-x evolution
- The non-linear Glasma
- Spatial string tension of finite temperature QCD matter in gauge/gravity duality
- Randomness in infinitesimal extent in the McLerran-Venugopalan model
- Magnetic screening in high-energy heavy-ion collisions
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- Initial state in relativistic nuclear collisions and Color Glass Condensate
- Structure of chromomagnetic fields in the glasma
- Spatial Wilson loops in the classical field of high-energy heavy-ion collisions
- QCD and High Energy Interactions: Moriond 2015 Theory Summary