Anisotropic tomography of heavy quark dissociation by using general propagator structure at finite magnetic field
arXiv:2204.02312 · doi:10.1103/PhysRevD.106.054010
Abstract
In this work we have explored the imaginary part of the Heavy Quark (HQ) potential and subsequently the dissociation of heavy quarkonia at finite temperature and magnetic field. With respect to earlier investigations on this topic, present work contain three new ingredients. First one is considering all Landau level summation, for which present work can be applicable in entire magnetic field domain - from weak to strong. Second one is the general structure of the gauge boson propagator in a hot magnetized medium, which is used here in heavy quark potential problem first time. Third one is a rich anisotropic structure of the complex heavy quark potential, which explicitly depends on the longitudinal and transverse distance. By comparing with earlier references, we have attempted to display our new contributions by plotting heavy quark potential tomography and dissociation probability at finite temperature and magnetic field.
27 pages, 9 figures
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Cited by in corpus (10)
- Magnetic field-dependent electric charge transport in hadronic medium at finite temperature
- Heavy quarkonia in QGP medium in an arbitrary magnetic field
- Collective modes of gluons in an anisotropic thermo-magnetic medium
- Transport Coefficients of relativistic matter: A detailed formalism with a gross knowledge of their magnitude
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- Thermal Field Theory in the Presence of a Background Magnetic Field and its Application to QCD
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