Seminars
Seminars
Past Events
- "Supernova neutrino transport" (Tobias Fischer, Institute of Theoretical Physics) -
- "Small bits of cold dense matter" (Joe Carlson, Los Alamos National Laboratory) -
- "Observing chiral partners in nuclear medium" (Su Houng Lee, Yonsei University) -
- "Constraining the symmetry energy and effective mass splitting from Heavy ion collisions" (Yingxun Zhang, China Institute of Atomic Energy) -
- "Clustering, fragmentation in and consistency of transport descriptions of heavy ion collisions" (Hermann Wolter, University of Munch) -
- "Dense matter from nuclear forces" (Achim Schwenk, TU Darmstadt) -
- TBA (Baojun Cai, Texas A&M University-Commerce) -
- "Proton-skins in momentum space and neutron-skins in coordinate space in heavy nuclei" (Bao-An Li, Texas A&M University-Commerce) -
- "Superfluidity in dense matter" (Stephan Stetina, Institute for Nuclear Theory) -
- "Thermal conductivity and impurity scattering in the accreting neutron star's crust" (Alessandro Roggero, Institute for Nuclear Theory) -
- "Jets and jet substructure for inclusive jet production at the LHC" (Zhongbo Kang, Los Alamos National Laboratory) -
- "Neutrino oscillations in compact object mergers" (Gail McLaughlin, North Carolina State University) -
- "Nuclear pasta observables" (Matthew Caplan, Indiana University) -
- "Molecular dynamics simulations of nuclear pasta" (Claudio Dorso, University of Buenos Aires) -
- "Quantum simulations of nuclear pasta" (William Newton, Texas A&M University-Commerce) -
- "Quark matter in magnetic fields" (Srimoyee Sen, University of Arizona) -
- "Transport properties in magnetic fields" (Ho-Ung Yee, University of Illinois at Chicago) -
- "Damping of r-modes via phase conversion" (Sophia Han, The University of Tennessee, Knoxville) -
- "r-modes" (Nils Andersson, University of Southampton) -
- "Instabilities in two-component superfluids" (Alexander Haber, Institute for Theoretical Physics) -
- "Pulsar glitches and EOS" (Ilaria Caiazzo, University of British Columbia) -
- "Constraining Superfluidity in Dense Matter from the Cooling of Isolated Neutron Stars" (Spencer Beloin, University of Tennessee) -
- "Vortex pinning" (Kazuyuki Sekizawa,, Warsaw University of Technology) -
- "Exploring phases with transport coefficients" (Sreemoyee Sarkar, TIFR) -
- "Phases, EOS, cooling of compact stars" (Armen Sedrakian, University of Frankfurt) -
- "Thermal and transport properties of neutron star matter" (Sanjay Reddy, Institute for Nuclear Theory) -
- "Quark deconfinement in neutron stars" (Fridolin Weber, San Diego State University) -
- "EoS from spectral fits of X-ray burst cooling tails" (Joonas Nattila, University of Turku, Tuorla Observatory) -
- “From Neutron Star Observables to the Dense Matter Equation of State” (Carolyn Raithel, University of Arizona) -
- Empirical equation of state and X-ray observations of neutron stars” (Nicolas Baillot d'Etivaux, Institut de physique nucléaire Lyon) -
- "Deconfinement at high temperatures and moderately high baryon densities" (Peter Petreczky, Brookhaven National Lab) -
- "Gravitational waves and the equation of state" (Sukanta Bose, Washington State University) -
- "Equation of state and symmetry energy from heavy ion collisions" (Bill Lynch, Michigan State University) -
- "Equation of state from Chiral Effective Field Theory" (Jeremy Holt, Texas A&M) -
- "Combining nuclear theory and neutron star observations to determine the properties of dense matter” (Andrew Steiner, University of Tennessee, Knoxville) -
- "Probing Neutron Star Interiors with Gravitational Waves" (Nicolas Yunes & Katerina Chatziioannou, Montana State University) -
- "The uncertainty quantifications in covariant density functional theory" (Anatoli Afanasjev, Mississippi State University) -
- "Constraining Neutron Star Properties from Laboratory Experiments" (Jorge Piekarewicz, Florida State University) -
- "Nuclear charge and neutron radii and nuclear matter: correlation analysis in Skyrme-DFT” (Witold Nazarewicz, Michigan State University) -
- "Connecting nuclear masses to the mysterious origins of the heavy elements" (Rebecca Surman, University of Notre Dame) -
- "Error plots, Bayesian methods, and model selection in EFT" (Natalie Klco & Daniel Phillips, University of Washington & Ohio University) -
- "Uncertainty quantification in ab initio nuclear theory” (Andreas Ekström, Chalmers University of Technology) -
- "Bayesian statistics applied to complex models of physical systems" (Ian Vernon, Durham University) -
- "Improving the accuracy and computational efficiency of BNS waveform models for measuring the neutron star equation of state" (Ben Lackey, Syracuse University) -
- "Application of Bayesian Methods to Finding Jets in Heavy Ion Collisions, and potential applications in Nuclear Security" (Ron Soltz, Lawrence Livermore National Laboratory) -
- "Propagating Nuclear Uncertainties from Databases to Applications" (Michael Buchoff, Lawrence Livermore National Laboratory) -
- "The Roles of Nuclear Physics and the Maximum Mass in Constraining the Neutron Star Radius" (James Lattimer, Stony Brook University) -
- "How well do we understand Beryllium-7 + proton -> Boron-8 + photon? A Bayesian Analysis Based on Effective Field Theory" (Xilin Zhang, University of Washington) -
- "Predictive ab initio many-body theory" (Kyle Wendt, Technische Universität Darmstadt) -
- "Transforming Heavy-Ion Physics into a Quantitative Science" (Scott Pratt, Michigan State University) -
