北京雁栖湖应用数学研究院 北京雁栖湖应用数学研究院

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关于我们
院长致辞
理事会
协作机构
参观来访
人员
管理层
科研人员
博士后
来访学者
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学术支持
学术研究
研究团队
公开课
讨论班
期刊
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教研人员
博士后
学生
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学术会议
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学院生活
住宿
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配套设施
周边旅游
新闻
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通知公告
资料下载
清华大学 "求真书院"
清华大学丘成桐数学科学中心
清华三亚国际数学论坛
上海数学与交叉学科研究院
河套数学与交叉学科研究院
BIMSA > The inevitability of physical laws
The inevitability of physical laws
Can we recover known physics from basic principles alone?

Quantum field theory is far less arbitrary than it appears. Self-consistency strongly constrains what is possible, and some familiar laws may follow inevitably. This is seen most clearly in scattering amplitudes, where complicated calculations often collapse into remarkably simple answers involving positive geometries, cluster algebras, combinatorics, and special functions. These surprising structures suggest that a deeper formalism—beyond standard QFT and traditional Lagrangian methods—remains to be discovered.

If consistency is so powerful, what can it teach us about quantum gravity? Can we obtain rigorous, model-independent results without assuming string theory or relying on black-hole physics?

These questions lead to the *space of all allowed theories*. We will explore it through uniqueness theorems and the analytic S-matrix bootstrap, asking: Which theories are possible? And where does string theory sit in the space of all allowed theories?

The course will progress from foundational calculations to modern methods and current research. Homework will begin with guided calculations and gradually develop into open-ended problems. The course may include a short research project based on an accessible open question.
讲师
劳伦修·罗迪纳
日期
2026年10月06日 至 12月22日
位置
Weekday Time Venue Online ID Password
周二 15:20 - 18:40 Qiuzhen ZOOM 13 637 734 0280 BIMSA
修课要求
Basic notions of QFT
课程大纲
1. Feynman diagrams and scattering amplitudes
Basic calculations and the physical meaning of amplitudes.

2. Consistency in quantum field theory
Symmetry, locality, unitarity, causality.

3. Beyond Feynman diagrams
On-shell methods, amplitudes via curve counting.

4. Uniqueness of physical laws
Deriving gauge theory and gravity from consistency.

5. Gravity as Yang–Mills squared
Color–kinematics duality and the double copy.

6. The analytic S-matrix
Analyticity, crossing symmetry, dispersion relations, and positivity.

7. The space of allowed theories
Uniqueness theorems and the S-matrix bootstrap.

8. String theory from consistency
String amplitudes and their place in the space of theories.

9. New mathematics from scattering
Positive geometries, cluster algebras, combinatorics, and special functions.

10. Quantum gravity
Model-independent constraints and swampland conjectures
听众
Advanced Undergraduate , Graduate , 博士后 , Researcher
视频公开
公开
笔记公开
公开
语言
英文
讲师介绍
Laurentiu Rodina obtained his PhD from Princeton University, under the supervision of Nima Arkani-Hamed. He was a postdoctoral fellow at CEA Saclay-Paris and National Taiwan University, and a Marie Curie Fellow at Queen Mary University of London. He joined BIMSA as assistant professor in 2023 and since 2025 is associate professor. His research is focused on bootstrap approaches in QFT and CFT: describing the space of theories consistent with fundamental physical principles.
北京雁栖湖应用数学研究院
CONTACT

No. 544, Hefangkou Village Huaibei Town, Huairou District Beijing 101408

北京市怀柔区 河防口村544号
北京雁栖湖应用数学研究院 101408

Tel. 010-60661855 Tel. 010-60661855
Email. administration@bimsa.cn

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