Hydrodynamic fluctuations and ultra-central flow puzzle in heavy-ion collisions
暂无分享,去创建一个
[1] D. Chinellato,et al. Assessing the ultracentral flow puzzle in hydrodynamic modeling of heavy-ion collisions , 2022, Physical Review C.
[2] Tetsufumi Hirano,et al. Effects of hydrodynamic and initial longitudinal fluctuations on rapidity decorrelation of collective flow , 2021, Physics Letters B.
[3] T. N. Stevenson,et al. Fluid Mechanics , 2021, Nature.
[4] A. Onnerstad,et al. Bayesian estimation of the specific shear and bulk viscosity of the quark-gluon plasma with additional flow harmonic observables , 2021, Physical Review C.
[5] R. Wolpert,et al. Multisystem Bayesian constraints on the transport coefficients of QCD matter , 2020, 2011.01430.
[6] R. Snellings,et al. Bayesian analysis of heavy ion collisions with the heavy ion computational framework Trajectum , 2020, Physical Review C.
[7] R. Wolpert,et al. Phenomenological Constraints on the Transport Properties of QCD Matter with Data-Driven Model Averaging. , 2020, Physical review letters.
[8] J. Nagle,et al. Gluonic hot spot initial conditions in heavy-ion collisions , 2020, 2008.08729.
[9] B. Zakharov. Collective Nuclear Vibrations and Initial State Shape Fluctuations in Central Pb + Pb Collisions: Resolving the v2 to v3 Puzzle , 2020, JETP Letters.
[10] M. Luzum,et al. Possible octupole deformation of Pb208 and the ultracentral v2 to v3 puzzle , 2020, 2007.00780.
[11] K. Eskola,et al. Temperature dependence of η/s of strongly interacting matter: Effects of the equation of state and the parametric form of (η/s)(T) , 2020, 2006.12499.
[12] Tetsufumi Hirano,et al. Rapidity decorrelation of anisotropic flow caused by hydrodynamic fluctuations , 2020, 2003.13496.
[13] M. Sievert,et al. Baseline predictions of elliptic flow and fluctuations for the RHIC Beam Energy Scan using response coefficients , 2019, 1910.03677.
[14] Steffen A. Bass,et al. Bayesian estimation of the specific shear and bulk viscosity of quark–gluon plasma , 2019, Nature Physics.
[15] C. Marquet,et al. Primordial fluctuations in heavy-ion collisions , 2019, 1907.10948.
[16] K. Murase. Causal hydrodynamic fluctuations in non-static and inhomogeneous backgrounds , 2019, Annals of Physics.
[17] A. Bazavov,et al. Hot-dense Lattice QCD: USQCD whitepaper 2018 , 2019, 1904.09951.
[18] Alexei Bazavov,et al. Hot-dense Lattice QCD , 2019, The European Physical Journal A.
[19] M. Sievert,et al. Shrinking the the Quark Gluon Plasma. , 2019, 1901.01319.
[20] M. Sievert,et al. CERN Large Hadron Collider system size scan predictions for PbPb, XeXe, ArAr, and OO with relativistic hydrodynamics , 2019, Physical Review C.
[21] S. Bass,et al. Estimating initial state and quark-gluon plasma medium properties using a hybrid model with nucleon substructure calibrated to $p$-Pb and Pb-Pb collisions at $\sqrt{s_\mathrm{NN}}=5.02$ TeV , 2018, 1808.02106.
[22] Mayank Singh,et al. Hydrodynamic Fluctuations in Relativistic Heavy-Ion Collisions , 2019 .
[23] D. M. Goméz Coral,et al. Energy dependence and fluctuations of anisotropic flow in Pb-Pb collisions at sNN=5.02$$ \sqrt{s_{\mathrm{NN}}}=5.02 $$ and 2.76 TeV , 2018, Journal of High Energy Physics.
[24] J. Jia,et al. Centrality fluctuations in heavy-ion collisions , 2018, Physical Review C.
[25] G. Moore,et al. QCD shear viscosity at (almost) NLO , 2018, 1802.09535.
[26] V. Sarti,et al. Effect of the QCD equation of state and strange hadronic resonances on multiparticle correlations in heavy ion collisions , 2017, Physical Review C.
[27] V. Roy,et al. Relativistic Hydrodynamics in Heavy-Ion Collisions: General Aspects and Recent Developments , 2016, 1605.08694.
[28] Ulrich Heinz,et al. Applying Bayesian parameter estimation to relativistic heavy-ion collisions: simultaneous characterization of the initial state and quark-gluon plasma medium , 2016, 1605.03954.
[29] C. Loizides. Glauber modeling of high-energy nuclear collisions at the subnucleon level , 2016, 1603.07375.
[30] Tetsufumi Hirano,et al. Hydrodynamic fluctuations and dissipation in an integrated dynamical model , 2016, 1601.02260.
[31] J. Ollitrault,et al. Linear and cubic response to the initial eccentricity in heavy-ion collisions , 2015, 1511.03896.
[32] V. Greco,et al. Initial state fluctuations from mid-peripheral to ultra-central collisions in a event-by-event transport approach , 2015, 1507.05540.
[33] S. Pal,et al. Collective flow in event-by-event partonic transport plus hydrodynamics hybrid approach , 2015, 1503.03862.
[34] U. Heinz,et al. Shape and flow fluctuations in ultra-central Pb+Pb collisions at the LHC , 2015, 1502.04636.
[35] S. Jeon,et al. Extracting the bulk viscosity of the quark–gluon plasma , 2014, 1408.0024.
[36] V. M. Ghete,et al. Studies of azimuthal dihadron correlations in ultra-central PbPb collisions at $ \sqrt{{{s_{NN }}}} $ =2.76 TeV , 2013, 1312.1845.
[37] C. Young. Numerical integration of thermal noise in relativistic hydrodynamics , 2013, 1306.0472.
[38] M. Luzum,et al. Extracting the shear viscosity of the quark-gluon plasma from flow in ultra-central heavy-ion collisions , 2012, 1210.6010.
[39] Pavel Strachota,et al. Measurement of the azimuthal anisotropy for charged particle production in √ sNN = 2.76 TeV lead-lead collisions with the ATLAS detector , 2012 .
[40] Y. Nara,et al. Integrated Dynamical Approach to Relativistic Heavy Ion Collisions , 2012, 1204.5814.
[41] Atlas Collaboration. Measurement of the azimuthal anisotropy for charged particle production in sqrt(s_NN) = 2.76 TeV lead-lead collisions with the ATLAS detector , 2012, 1203.3087.
[42] M. Luzum,et al. Anisotropic flow in event-by-event ideal hydrodynamic simulations of √[s(NN)]=200 GeV Au+Au collisions. , 2012, Physical review letters.
[43] B. Müller,et al. Relativistic theory of hydrodynamic fluctuations with applications to heavy-ion collisions , 2011, 1112.6405.
[44] P. Bożek. Flow and interferometry in (3 + 1)-dimensional viscous hydrodynamics , 2011, 1110.6742.
[45] J. G. Contreras,et al. Higher harmonic anisotropic flow measurements of charged particles in Pb-Pb collisions at sqrt(s(NN)) = 2.76 TeV. , 2011, Physical review letters.
[46] U. Heinz,et al. Radial and elliptic flow in Pb + Pb collisions at energies available at the CERN Large Hadron Collider from viscous hydrodynamics , 2011, 1105.3226.
[47] H. Meyer. Transport properties of the quark-gluon plasma , 2011, 1104.3708.
[48] U. Heinz,et al. Event-by-event shape and flow fluctuations of relativistic heavy-ion collision fireballs , 2011, 1104.0650.
[49] S. Jeon,et al. Anisotropic flow in $\sqrt{s}=2.76$ TeV Pb+Pb collisions at the LHC , 2011, 1102.0575.
[50] J. G. Contreras,et al. Centrality Dependence of the Charged-Particle Multiplicity Density at Midrapidity in Pb-Pb Collisions at √sNN=2.76 TeV , 2010, 1012.1657.
[51] S. Bass,et al. Translation of collision geometry fluctuations into momentum anisotropies in relativistic heavy-ion collisions , 2010, 1009.1847.
[52] P. Bożek,et al. Hydrodynamic predictions for Pb + Pb collisions at sNN=2.76 TeV , 2010, 1007.2294.
[53] P. Petreczky,et al. QCD Equation of State and Hadron Resonance Gas , 2009, 0912.2541.
[54] Huichao Song. Causal Viscous Hydrodynamics for Relativistic Heavy Ion Collisions , 2009, 0908.3656.
[55] Tetsufumi Hirano,et al. Effects of Bulk Viscosity at Freezeout , 2009, 0903.4436.
[56] M. Stephanov,et al. Relativistic viscous hydrodynamics, conformal invariance, and holography , 2007, 0712.2451.
[57] R. Glauber. Quantum Optics and Heavy Ion Physics , 2006, nucl-th/0604021.
[58] U. Heinz,et al. Hadronic dissipative effects on elliptic flow in ultrarelativistic heavy-ion collisions , 2005, Physics Letters B.
[59] M. Gyulassy,et al. 3D jet tomography of twisted strongly coupled quark gluon plasmas , 2005, nucl-th/0505004.
[60] D. Son,et al. Viscosity in strongly interacting quantum field theories from black hole physics. , 2005, Physical review letters.
[61] D. Teaney. The Effects of Viscosity on Spectra, Elliptic Elow, and HBT Radii , 2003 .
[62] D. Teaney. The Effect of Shear Viscosity on Spectra, Elliptic Flow, and HBT Radii , 2003, nucl-th/0301099.
[63] J. Gunion,et al. Hadron Production in Nuclear Collisions: A New Parton Model Approach , 1977 .
[64] Fred Cooper,et al. Single-particle distribution in the hydrodynamic and statistical thermodynamic models of multiparticle production , 1974 .
[65] R. Kubo. Statistical-Mechanical Theory of Irreversible Processes : I. General Theory and Simple Applications to Magnetic and Conduction Problems , 1957 .
[66] J. Kirkwood. The statistical mechanical theory of irreversible processes , 1949 .
[67] J. Takahashi,et al. Assessing the ultra-central flow puzzle in the Bayesian era , 2022 .
[68] Fluctuations of anisotropic flow in Pb+Pb collisions at √sNN = 5.02 TeV with the ATLAS detector , 2020 .
[69] T. B. Skaali,et al. Energy dependence and fluctuations of anisotropic flow in Pb-Pb collisions at sNN=5.02 and 2.76 TeV , 2018 .
[70] L. Landau,et al. statistical-physics-part-1 , 1958 .