10th QGG Lecture Series

Poster Sessions

  • Poster sessions will take place for one hour between lectures each afternoon, from 3:00 to 4:00 PM (see Program).
  • Participants are encouraged to present a poster on, e.g., current research or a short review of relevant work, as long as it remains broadly connected to the theme of this lecture series.
  • Poster presentations can be applied for through the registration form for the intensive lectures.
    The number of posters is limited due to room capacity. If applications exceed the limit, the organizers will make a selection.
  • Further details regarding poster format guidelines will be announced once the poster presenters are finalized.

Poster Presenters

The numbers below correspond to the poster number.

  1. 1
    Shirabe Endo
    KEK / SOKENDAI
    Quantum Algorithm Toward Searching String Vacua
  2. 2
    Reishi Maeta
    Hiroshima University
    Regularized Master-Field Approximation for the Mass-Deformed Supersymmetric Yang–Mills Matrix Models
  3. 3
    Worapat Piensuk
    SOKENDAI
    Lorentz-Preserving Regularization of the IKKT Matrix Model
  4. 4
    Akifumi Sako
    Tokyo University of Science
    Invariant Subvariety From the Large N Matrix Model
  5. 5
    Cheng-Tsung Wang
    KEK / SOKENDAI
    Area Law in Two-Dimensional Yang–Mills Matrix Integral
  6. 6
    Tin-Long Chau
    KEK / SOKENDAI
    A New Proposal for Large-Scale First-Principle Calculations of Decoherence in the Caldeira–Leggett Model and Analogous Models
  7. 7
    Chien-Yu Chou
    RIKEN iTHEMS
    A New Probability-Transport Approach to Flow-Based Sampling in Field Theory
  8. 8
    Masataka Ishikawa
    The University of Tokyo
    Worldline Effective Field Theory Meets the Schwinger–Keldysh Formalism: Dissipative Tidal Effects
  9. 9
    Kakeru Kuramasu
    Rikkyo University
    Closed Universe in AdS
  10. 10
    Pasquale Marra
    Sophia Universtiy
    Metric-Induced Non-Hermitian Physics
  11. 11
    Yu Miyauchi
    Keio University
    EFT Constraints From Massive KK's
  12. 12
    Takanao Tsuyuki
    Hokkaido Information University
    Spatially Homogeneous Solutions of Higher‑Dimensional Vacuum Einstein Equations