Azimuthal asymmetries in high-energy collisions of proton s with holographic shockwaves (2014)
- Authors:
- Autor USP: NORONHA JUNIOR, JORGE JOSE LEITE - IF
- Unidade: IF
- Subjects: COLISÕES; HOLOGRAFIA
- Language: Inglês
- Imprenta:
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ABNT
NORONHA JUNIOR, Jorge José Leite e DUMITRU, Adrian. Azimuthal asymmetries in high-energy collisions of proton s with holographic shockwaves. . São Paulo: Instituto de Física, Universidade de São Paulo. Disponível em: http://arxiv.org/pdf/1401.4467v2.pdf. Acesso em: 22 jan. 2026. , 2014 -
APA
Noronha Junior, J. J. L., & Dumitru, A. (2014). Azimuthal asymmetries in high-energy collisions of proton s with holographic shockwaves. São Paulo: Instituto de Física, Universidade de São Paulo. Recuperado de http://arxiv.org/pdf/1401.4467v2.pdf -
NLM
Noronha Junior JJL, Dumitru A. Azimuthal asymmetries in high-energy collisions of proton s with holographic shockwaves [Internet]. 2014 ;[citado 2026 jan. 22 ] Available from: http://arxiv.org/pdf/1401.4467v2.pdf -
Vancouver
Noronha Junior JJL, Dumitru A. Azimuthal asymmetries in high-energy collisions of proton s with holographic shockwaves [Internet]. 2014 ;[citado 2026 jan. 22 ] Available from: http://arxiv.org/pdf/1401.4467v2.pdf - Nonlinear dynamics from the relativistic boltzmann equation in the friedmann-lemaître-robertson-walker spacetime
- Divergence of the chapman-enskog expansion in relativistic kinetic theory
- Exact analytical solutions of second order conformal hydrodynamics
- Azimuthal asymmetries in high-energy collisions of protons with holographic shockwaves
- Energy loss, equilibration, and thermodynamics of a baryon rich strongly coupled quark-gluon plasma
- Resummed hydrodynamic expansion for a plasma of particles interacting with fields
- Non-hydrodynamic quasinormal modes and equilibration of a baryon dense holographic QGP with a critical point
- Studying the validity of relativistic hydrodynamics with a new exact solution of the boltzmann equation
- Solução exata da equação de Boltzmann relativística para o plasma de quarks e glúons
- Origin of the relaxation time in dissipative fluid dynamics
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