Talks

2019

Zi Yang Meng:

  1. Deep Learning And Physics 2019
    Yukawa Insititute for Theoretical Physics, Kyoto, Oct. 31- Nov. 2, 2019
    What we talk about when we talk about Learning in many-body physics

  2. Boundary and Bulk Criticality 2019
    the Institute for Theoretical Physics and Astrophysics of the University of Würzburg, Oct. 1- 4, 2019
    What we talk about when we talk about fermion QCP

  3. 2019 Summer Program on Quantum Spin Liquids
    Aspen Center for Physics, June 23-July 14, 2019
    Fractionalization, emergent symmetries and gauge fields

2018

Zi Yang Meng:

  1. International Workshop on Precision Many-Body Physics
    Wilczek Quantum Center, Shanghai, Oct. 30- Nov. 5, 2018
    Dynamical signatures in new paradigms of quantum Matter

  2. Conference on Computational Physics 2018
    University of California, Davis, July 29 – August 2, 2018
    Quantum Monte Carlo investigations of correlated electron systems, present and future

  3. International Conference on Magnetism 2018
    San Francisco, July 16-20, 2018
    Revealing fermionic quantum criticality from new Monte Carlo techniques

  4. Many body Quantum States 2018
    KAIST, April 25-28, 2018
    Dynamical signatures in the silent spring

  5. Condensed Matter Theory Seminar
    Harvard University and Massachusetts Institute of Technology, January, 2018
    Revealing quantum criticalities from new Monte Carlo Techniques


2017

Zi Yang Meng:

  1. The 15th International Conference on Advanced Materials
    University of Kyoto, Japan, August 27 - September 1, 2017
    Gapped spinon in a new kagome quantum spin liquid Cu3Zn(OH)6FBr

  2. Program on Intertwined Order and Fluctuations in Quantum Materials
    Kavli Institute for Theoretical Physics, UC Santa Barbara, United States, August 8, 2017
    Itinerant Quantum Critical Points and Self-learning Monte Carlo Method

  3. International workshop on numerical methods and simulations for materials design and strongly correlated quantum matters
    Kobe, Japan, March 24-25, 2017
    Self-learning Monte Carlo Method

  4. Seminar Talk
    The University of Tokyo, Japan, March 22, 2017
    Non-Fermi-liquid and all that

  5. The10th International Conference on Computational Physics (ICCP10)
    Sands Cotai Central, Macao SAR, China, January 16-20, 2017
    Quantum critical point of Dirac fermion mass generation without spontaneous symmetry breaking

Xiao Yan Xu:

  1. Program on Machine Learning and Many-Body Physics
    Kvali Institute for Theoretical Sciences, Beijing, China, June 28 - July 7, 2017
    Self-Learning quantum Monte Carlo method in interacting fermion systems


2015

Zi Yang Meng:

  1. Program on New Phases and Emergent Phenomena in Correlated Materials with Strong Spin-Orbit Coupling
    Kavli Institute for Theoretical Physics, UC Santa Barbara, United States, August 18, 2015
    Interaction-driven topological phase transitions

  2. Condensed Matter Theory Seminar
    Department of Physics, University of Michigan, United States, May 18, 2015
    Coulomb liquid phases of bosonic cluster Mott insulators on pyrochlore lattice

  3. Condensed Matter Theory Seminar
    Department of Physics, UC Santa Barbara, United States, April 6, 2015
    Coulomb liquid phases of bosonic cluster Mott insulators on pyrochlore lattice

  4. Condensed Matter Theory Seminar
    Max-Planck-Institut für Physik Komplexer Systeme, Dresden, Germany, February 20, 2015
    Coulomb liquid phases of bosonic cluster Mott insulators on pyrochlore lattice

  5. The 9th International Conference on Computational Physics (ICCP9), B6. Symposium on Quantum many body physics
    The National University of Singapore, Singapore, January 11, 2015
    New scheme to calculate superconductivity instabilities in correlated electronic systems beyond single-site DMFT


2014

Zi Yang Meng:

  1. Long-term Workshop on Novel Quantum States in Condensed Matter 2014 (NQS2014)
    Yukawa Institute for Theoretical Physics, Kyoto, Japan, November 19, 2014
    New scheme to calculate superconductivity instabilities in correlated electronic systems beyond single-site DMFT

  2. The Asia-Pacific Workshop on Strongly Correlated System 2014
    Institute of Physics, Chinese Academy of Sciences, Beijing, China, October 9, 2014
    New scheme to calculate superconductivity instabilities in correlated electronic systems beyond single-site DMFT

  3. Program on Topological Matter, Superconductivity and Majorana
    Institute for Advanced Study, the Hong Kong University of Science and Technology, Hong Kong, January 14-20, 2014
    Measurements of Superconductivity in DMFT simulations at the two-particle level


2013

Zi Yang Meng:

  1. Workshop on Bad Metal Behavior and Mott Quantum Criticality
    Asia Pacific Center for Theoretical Physics, Pohang, Korea, July 15-19, 2013
    Dynamical cluster quantum Monte Carlo simulations on the square and triangular lattice Hubbard models

  2. Seminar Talks
    Boston University, Boston College, Massachusetts Institute of Technology, United States, May 13-17, 2013
    Dynamical cluster quantum Monte Carlo simulations on strongly correlated electron systems


2012

Zi Yang Meng:

  1. LaSigma Journal Club
    Department of Physics and Astronomy, Louisiana State University, United States, September 5, 2012
    Hubbard model on honeycomb bilayer

  2. Condensed Matter Seminar
    Department of Physics, University of Colorado at Boulder, United States, July 5, 2012
    Properties near quantum critical point in two dimensional Hubbard Model

  3. LA-SiGMA 2012 All Hands Meeting
    Louisiana Board of Regents, United States, April 2, 2012
    Multiscale Many Body Approach for strongly correlated systems

  4. Mini-workshop on Spin Liquid Phase: Models and Material
    Institute of Physics, Chinese Academy of Sciences, Beijing, China, March 28, 2012
    Quantum Phase Transition in the Kane-Mele-Hubbard Model


2011

Zi Yang Meng:

  1. CMTC Seminar
    Condensed Matter Theory Center, University of Maryland, United States, December 13, 2011
    Quantum Monte Carlo Studies of Correlated Electrons on Honeycomb Lattice and interacting Topological Insulator