activity
20212024
most citedRelativistic dissipative spin hydrodynamics from kinetic theory with a nonlocal collision term

61 citations · 86 across the 6 of their papers we have counts for

collaborators

6 papers

nucl-th2024

Second-Order Transport Coefficients in Neutron Star Mergers

Yumu Yang, Mauricio Hippert, Enrico Speranza +1

In neutron stars, flavor-changing weak interactions determine the equilibrium fraction of protons over neutrons. In binary neutron-star mergers, violent changes in density modify t…

nucl-th20245 cited

First-order relativistic hydrodynamics with an information current

Lorenzo Gavassino, Nick Abboud, Enrico Speranza +1

We show that it is possible to define a timelike future-directed information current within relativistic first-order hydrodynamics. This constitutes the first step toward a covaria…

hep-ph202416 cited

Double-graviton production from Standard Model plasma

J. Ghiglieri, M. Laine, J. Schütte-Engel +1

The thermal plasma filling the early universe generated a stochastic gravitational wave background that peaks in the microwave frequency range today. If the graviton production rat…

nucl-th202261 cited

Relativistic dissipative spin hydrodynamics from kinetic theory with a nonlocal collision term

Nora Weickgenannt, David Wagner, Enrico Speranza +1

We derive relativistic dissipative spin hydrodynamics from kinetic theory featuring a nonlocal collision term using the method of moments. In this framework, the components of the…

nucl-th2022

Kinetic theory for massive spin-1 particles

David Wagner, Nora Weickgenannt, Enrico Speranza

We calculate the Wigner function for charged spin-1 particles in inhomogeneous classical electromagnetic fields, going to first order in a power series in . The Boltzmann eq…

hep-th20214 cited

Convergence of hydrodynamics in rapidly spinning strongly coupled plasma

Casey Cartwright, Markus Garbiso Amano, Matthias Kaminski +2

We compute the radius of convergence of the linearized relativistic hydrodynamic expansion around a non-trivially rotating strongly coupled N=4 Super-Yang-Mills plasma. Our results…