[2025-01-18] For better promotion of the events, the categories in this system will be adjusted. For details, please refer to the announcement of this system. The link is https://indico-tdli.sjtu.edu.cn/news/1-warm-reminder-on-adjusting-indico-tdli-categories-indico

INPAC Summer School 2023: Scattering Amplitudes and Novel Ideas in Collider Physics

Asia/Shanghai
105 (东下院)

105

东下院

Shanghai Jiao Tong University 800 Dongchuan Road, Shanghai 200240
Description

The INPAC Summer School aims to promote interest in theoretical particle physics among Chinese students and young researchers and to introduce them to the research frontiers.

Scattering amplitudes lies at the heart of quantum field theory, from which derive novel ideas to address the key problems raised by collider physics discoveries.

The 2023 edition of the INPAC Summer School will focus on the Amplitudes and its applications.  Experts are brought together to provide both pedagogical introductions and overview of new theoretical developments.  Lectures will cover the fundamentals of amplitudes and perturbative QCD, touching upon advanced topics such as: CHY, double copy and geometric structures in amplitudes, EFT amplitudes, conformal field theory and OPE .

The School this year comprises five in-depth lecture series,  a similar number of tutorials and free discussions. Our five lecturers and their subjects will be:

何颂  (中科院理论所)  --- Introduction to math & physics of scattering amplitudes

Johannes Henn  (MPI Physics) --- Modern methods for scattering amplitudes

马滟青 (北京大学) --- Novel methods in Feynman loop integrals

杨刚 (中科院理论所) --- Introduction to Form Factors

朱华星 (浙江大学) --- Use of conformal symmetry in collider physics

The school is held in person from 26 June to 2 July at Shanghai Jiao Tong University.  PhD students, postdocs and young faculties are encouraged to register. 

The lectures have been recorded. Videos are available for download at https://www.aliyundrive.com/s/uzH4gtDkSaH  

Local Organizers: 高俊, 何红建, 王伟, 颜开

    • 09:00 10:00
      Registration and Welcome 1h
    • 10:00 11:40
      ZHU: Lecture 1

      Lecturer: Prof. HuaXing Zhu Research Area: QFT
      Subject: Use of conformal symmetry in collider physics

    • 13:30 15:10
      HENN: Lecture 1

      Lecturer: Prof. Johannes Henn Research Area: QFT
      Subject: Modern methods for scattering amplitudes

    • 15:10 15:30
      Break 20m
    • 15:30 17:10
      MA: Lecture 1

      Lecturer: Prof. Yanqin Ma Research Area: QFT
      Subject: Novel methods in Feynman loop integrals

    • 08:00 09:40
      ZHU: Lecture 2

      Lecturer: Prof. HuaXing Zhu Research Area: QFT
      Subject: Use of conformal symmetry in collider physics

    • 09:40 10:00
      Break 20m
    • 10:00 11:40
      HENN: Lecture 2

      Lecturer: Prof. Johannes Henn Research Area: QFT
      Subject: Modern methods for scattering amplitudes

    • 13:30 15:10
      MA: Lecture 2

      Lecturer: Prof. Yanqin Ma Research Area: QFT
      Subject: Novel methods in Feynman loop integrals

    • 15:10 15:30
      Break 20m
    • 15:30 17:10
      MA: Lecture 3

      Lecturer: Prof. Yanqin Ma Research Area: QFT
      Subject: Novel methods in Feynman loop integrals

    • 08:00 09:40
      ZHU: Lecture 3

      Lecturer: Prof. HuaXing Zhu Research Area: QFT
      Subject: Use of conformal symmetry in collider physics

    • 09:40 10:00
      Break 20m
    • 10:00 11:40
      HENN: Lecture 3

      Lecturer: Prof. Johannes Henn Research Area: QFT
      Subject: Modern methods for scattering amplitudes

    • 13:30 15:10
      YANG: Lecture 1

      Prof. Gang Yang Research Area: QFT
      Subject: Introduction to Form Factors

    • 15:10 15:30
      Break 20m
    • 15:30 17:10
      HE: Lecture 1

      Lecturer: Prof. Song He Research Area: QFT
      Subject: Introduction to math & physics of scattering amplitudes

    • 08:00 09:40
      ZHU: Lecture 4

      Lecturer: Prof. HuaXing Zhu Research Area: QFT
      Subject: Use of conformal symmetry in collider physics

    • 09:40 10:00
      Break 20m
    • 10:00 11:40
      ZHU: Tutorial

      Lecturer: Prof. HuaXing Zhu Research Area: QFT
      Subject: Use of conformal symmetry in collider physics

    • 13:30 15:10
      YANG: Lecture 2

      Prof. Gang Yang Research Area: QFT
      Subject: Introduction to Form Factors

    • 15:10 15:30
      Break 20m
    • 15:30 17:10
      HE: Lecture 2

      Lecturer: Prof. Song He Research Area: QFT
      Subject: Introduction to math & physics of scattering amplitudes

    • 08:00 09:40
      HENN: Lecture 4

      Lecturer: Prof. Johannes Henn Research Area: QFT
      Subject: Modern methods for scattering amplitudes

    • 09:40 10:00
      Break 20m
    • 10:00 11:40
      MA: Lecture 4

      Lecturer: Prof. Yanqin Ma Research Area: QFT
      Subject: Novel methods in Feynman loop integrals

    • 13:30 15:10
      YANG: Lecture 3

      Prof. Gang Yang Research Area: QFT
      Subject: Introduction to Form Factors

    • 15:10 15:30
      Break 20m
    • 15:30 17:10
      HE: Lecture 3

      Lecturer: Prof. Song He Research Area: QFT
      Subject: Introduction to math & physics of scattering amplitudes

    • 08:00 09:40
      MA: Tutorial

      Lecturer: Prof. Yanqin Ma Research Area: QFT
      Subject: Novel methods in Feynman loop integrals

    • 09:40 10:00
      Break 20m
    • 10:00 11:40
      HE: Lecture 4

      Lecturer: Prof. Song He Research Area: QFT
      Subject: Introduction to math & physics of scattering amplitudes

    • 13:30 15:10
      HENN: Tutorial

      Lecturer: Prof. Johannes Henn Research Area: QFT
      Subject: Modern methods for scattering amplitudes

    • 15:10 15:30
      Break 20m
    • 15:30 17:10
      HE: Tutorial

      Lecturer: Prof. Song He Research Area: QFT
      Subject: Introduction to math & physics of scattering amplitudes

    • 08:00 09:40
      YANG: Lecture 4

      Prof. Gang Yang Research Area: QFT
      Subject: Introduction to Form Factors

    • 09:40 10:00
      Break 20m
    • 10:00 11:40
      YANG: Tutorial

      Prof. Gang Yang Research Area: QFT
      Subject: Introduction to Form Factors

    • 11:40 12:00
      Ending 20m