About the Journal Club
Welcome to the Heavy-Ion Physics Journal Club at Wayne State University for the Summer Semester 2025! This club provides an opportunity to discuss recent advances in heavy-ion collision phenomenology and related topics in nuclear and particle physics.
Schedule
The journal club meets weekly on Fridays from 12:30 PM to 1:30 PM in Room 312, Physics Building, Wayne State University.
| Date | Presenter | Topic |
|---|---|---|
| May 09, 2025 | Sayed Afrid Jahan, Chun Shen | Quark Matter 2025 - Highlights (slides Afrid), Links to Chun's highlights: Experimental discovery of the nuclear shape phase transition and nuclear structure on ultrashort timescales at the LHC with ALICE, Simulating stochastic diffusion in critical and near-critical fluids in (3+1) dimensions First direct measurement of radial flow in heavy-ion collisions with ALICE |
| May 16, 2025 | Hendrik Roch | Quark Matter 2025 - Highlights (slides), Q&A session |
| May 23, 2025 | Naveenkumar Senthilkumar | Globally Polarized Quark-Gluon Plasma in Noncentral A+A Collisions, Global quark polarization in noncentral A+A collisions (slides) |
| May 30, 2025 | No meeting | No meeting |
| Jun 06, 2025 | Ritoban Datta | CoMBolt-ITA, a Collective Model via relativistic Boltzmann equation in Isotropization Time Approximation (slides) |
| Jun 13, 2025 | No meeting | No meeting (UPC2025) |
| Jun 20, 2025 | No meeting | No meeting (CTEQ-MCgen Summer Workshop) |
| Jun 27, 2025 | No meeting | No meeting (CTEQ-MCgen Summer Workshop) |
| Jul 04, 2025 | No meeting (Holiday) | No meeting (Holiday) |
| Jul 11, 2025 | Akash Raj | The DGLAP evolution equations (slides) |
| Jul 18, 2025 | No meeting | No meeting |
| Jul 25, 2025 | Sayed Afrid Jahan | Prospectus test talk: (3+1)D Bayesian Analysis of RHIC Beam Energy Scan (BES) Data |
| Aug 01, 2025 | Ritoban Datta | Jet quenching: From theory to simulation |
| Aug 08, 2025 | Ritoban Datta | Prospectus test talk: An improved approach to multi-stage jet modification in heavy-ion collisions |
| Aug 15, 2025 | Anar Akbarov | Event-by-Event Initial State Modeling in Heavy-Ion Collisions |
Topic Suggestions
-
Initial state physics in heavy-ion collisions
- Bayesian quantification of strongly-interacting matter with color glass condensate initial conditions
- Heavy-Ion Collisions as Probes of Nuclear Structure
- Hydrodynamic-like behaviour of glasma
- MC-EKRT: Monte Carlo event generator with saturated minijet production for initializing 3+1 D fluid dynamics in high energy nuclear collisions
-
Pre-equilibrium physics
- Far-from-equilibrium attractors with Full Relativistic Boltzmann approach in 3+1 D: moments of distribution function and anisotropic flows vn
- Comparing matching prescriptions between pre-equilibrium and hydrodynamic models in high-energy nuclear collisions
- On the Approach Towards Equilibrium Through Momentum-Dependent Relaxation:Insights from Evolution of the Moments in Kinetic Theory
-
Hydrodynamic modeling
- Accessing the speed of sound in relativistic ultracentral nucleus-nucleus collisions using the mean transverse momentum
- BHAC-QGP: three-dimensional MHD simulations of relativistic heavy-ion collisions, I. Methods and tests
- BHAC-QGP: three-dimensional MHD simulations of relativistic heavy-ion collisions, II. Application to Au-Au collisions
- Sources of longitudinal flow decorrelations in high-energy nuclear collisions
- The applicability of hydrodynamics in heavy ion collisions at SqrtsNN = 2.4-7.7 GeV
- Stochastic baryon charge transport in relativistic hydrodynamics
- Hadronization mechanisms
- Hadronic transport
- Jets
- Photons & Dileptons
- Balance functions
- Heavy-flavor physics
- Equation of State
- HBT
- Neutron stars
- Machine learning
- Anisotropic flow
Longer Reviews
- Progress and Challenges in Small Systems
- Jet Quenching: From Theory to Simulation
- The QCD phase diagram and Beam Energy Scan physics: a theory overview
- QCD masterclass lectures on jet physics and machine learning
- A Decade of Collectivity in Small Systems
- Concepts of heavy ion physics
- The exploration of hot and dense nuclear matter: introduction to relativistic heavy-ion physics
- Mining for Gluon Saturation at Colliders