Seminars
Seminars
Past Events
- "The Essence of the Bayesian Paradigm" (Nozer Singpurwalla, City University of Hong Kong) -
- "Bayes this! Identifying and quantifying theoretical uncertainties." (Doron Gazit, Hebrew University of Jerusalem) -
- "Bayesian parameter estimation for effective field theories" (Sarah Wesolowski, Ohio State University) -
- "Bayesian constraint curve fitting for lattice QCD" (Chia Cheng Chang, Lawrence Berkeley National Laboratory) -
- Ultra Light Dark Matter and How to Detect It (William Terrano, Technical University of Munich) -
- "Bayes’ Rule and Laplace’s Big Data" (Sharon Bertsch McGrayne, Book Author) -
- "Statistical analysis of Nucleon-Nucleon interactions" (Rodrigo Navarro Perez, Lawrence Livermore National Laboratory) -
- "Fitting nonlocal energy density functionals for low-energy nuclear structure" (Karim Bennaceur, Université Claude Bernard) -
- "Optimisation of the shell-model Hamiltonian for heavy nuclei and the underlying uncertainty" (Chong Qi, KTH Stockholm) -
- "A poor man's attempt at fancy fitting of noisy lattice QCD data with exponentially degrading signal-to-noise ratios" (André Walker-Loud, Lawrence Berkeley National Laboratory) -
- Constraining the input parameters of a transport+hydrodynamics model of heavy ion collisions in RHIC beam energy scan range with the help of Gaussian emulators (Jussi Auvinen, Duke University) -
- An Example of Bayesian Model Calibration (Earl Lawrence, Los Alamos National Laboratory) -
- Sloppy nuclear energy density functionals: model reduction by manifold boundaries (Dario Vretenar, Universiy of Zagreb) -
- A Pedestrian's Perspective of Applying Bayesian Statistics in Effective Field Theories (Harald W. Griesshammer, George Washington University) -
- Extraction of quark-gluon-plasma properties via a model to data analysis of relativistic heavy-ion collisions (Jonah Bernhard/Steffen Bass, Duke University) -
- Baryon Spectroscopy: Data Consistency and Model Discrimination (David Ireland, University of Glasgow) -
- Going beyond generalized least squares algorithms for estimating nuclear data observables (Denise Neudecker, Los Alamos National Laboratory) -
- Sloppiness of nuclear structure models (Bartłomiej Szpak, IFJ PAN Krakow) -
- The Bayesian Unified Monte Carlo Method for Evaluating and Utilizing Nuclear Reaction Data (Donald Smith, formerly Argonne National Laboratory) -
- An introduction to Bayesian statistics and model calibration (Derek Bingham, Simon Fraser University) -
- Dense Axion Stars (Eric Braaten, Ohio State University) -
- Topological sigma models and dissipative hydrodynamics (Mukund Rangamani, UC Davis) -
- "Basis light-front approach to nuclear physics" (Xingbo Zhao, Institute of Modern Physics, Chinese Academy of Sciences) -
- "Quantum Monte Carlo calculations with Delta-full and Pion-less effective field theory local potentials" (Alessandro Lovato, Argonne National Laboratory) -
- "The shell model as an ab initio tool" (Ragnar Stroberg, TRIUMF) -
- "Continuum states in the shell model" (Andrey Shirokov, Moscow State University) -
- "Description of the scattering process using complex-scaling method" (Rimantas Lazauskas, IPHC) -
- "NCSM with a Core: Deriving the Shell Model Microscopically" (Bruce R. Barrett, University of Arizona) -
- CP-Odd Invariants for Multi-Higgs Models (Thomas Neder, Southhampton) -
- Optoelectronics of Graphene-based Van der Waals Heterostructures (Qiong Ma, MIT) -
- "Ab initio nuclear theory's symbiosis with relativistic quantum field theory" (James Vary, Iowa State University) -
- "Sensitivities and Correlations from chiral NN+3N Interactions in ab initio Nuclear Structure and Reaction Calculations" (Angelo Calci, TRIUMF) -
- "Nuclear Reactions in Lattice EFT" (Gautam Rupak, Mississippi State University) -
- Structural Dynamics of Surface Reactions: Oxidation and Heterogeneous Catalysis (Renee Gastineau, Molecular Engineering & Sciences Institute/Clean Energy Institute) -
- "Strongly interacting nucleons: from few to many" (Alexandros Gezerlis, University of Guelph) -
- Topology and exotic orders in quantum solids (Ying Ran, Boston College) -
- Symmetric tensor networks--- algorithms to sharply identify classes of quantum phases distinguishable by short-range physics (Ying Ran, Boston College) -
- "Magnetic properties of light nuclei from lattice QCD" (Brian Tiburzi, City College of New York) -
- Quantum Hall Matrix Models (David Tong, University of Cambridge) -
- "Towards an understanding of clustering in nuclei" (Ulf Meißner, HISKP) -
- "From EFTs to nuclei" (Thomas Papenbrock, University of Tennessee) -
- "Nuclear physics from QCD: new questions and future directions" (Martin Savage, Institute for Nuclear Theory) -
- "Medium-mass isotopes from chiral and lattice QCD interactions" (Carlo Barbieri, University of Surrey) -
- Ultrafast Dynamics of Quasiparticle Formation in Structurally Tunable Materials (Susan L. Dexheimer, Washington State University) -
- QGP in the Universe and in the Laboratory (Johann Rafelski, University of Arizona) -
- "N3LO NN interaction adjusted to light nuclei in ab exitu approach" (Youngman Kim, IBS) -
- Black Hole Evaporation in the BFSS Model (Evan Berkowitz, Lawrence Livermore National Laboratory) -
- "QMC for neutron matter and cold atoms" (Aurel Bulgac, University of Washington) -
- "Recent Results in Nuclear Lattice Effective Field Theory" (Dean Lee, NC State University) -
- "Two-Nucleon Higher Partial-Wave Scattering from Lattice QCD" (Evan Berkowitz, LLNL) -
