Simons Collaboration on the Non-Perturbative Bootstrap
E1314152
UNEXPLORED
The Simons Collaboration on the Non-Perturbative Bootstrap is a research initiative that brings together theoretical physicists and mathematicians to develop and apply bootstrap methods for understanding strongly coupled quantum field theories and conformal field theories beyond perturbation theory.
All labels observed (1)
| Label | Occurrences |
|---|---|
| Simons Collaboration on the Non-Perturbative Bootstrap canonical | 1 |
How this entity was disambiguated
This entity first appeared as the object of triple T18255438 — resolving that mention is where its identity was fixed. The disambiguator weighed these candidate entities and picked the highlighted one (or “None”, minting a new entity). This is how homonymy is resolved: the same surface form can point to different entities.
Target entity: Simons Collaboration on the Non-Perturbative Bootstrap Context triple: [Simons Foundation, operatesProgram, Simons Collaboration on the Non-Perturbative Bootstrap]
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A.
Gauge Theory Correlators from Non-Critical String Theory
"Gauge Theory Correlators from Non-Critical String Theory" is a research paper that explores how non-critical string theory can be used to compute correlation functions in gauge theories, contributing to the development and understanding of the AdS/CFT correspondence.
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B.
’t Hooft coupling
The ’t Hooft coupling is a rescaled gauge coupling constant, central in large-N gauge theory and string theory, that remains finite in the ’t Hooft large-N limit and controls the strength of interactions.
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C.
Renormalization and Galois Theories
Renormalization and Galois Theories is a mathematical physics work that connects the renormalization process in quantum field theory with Galois theory and motives, revealing deep arithmetic and geometric structures underlying quantum phenomena.
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D.
Gauge/Gravity Duality: Foundations and Applications
Gauge/Gravity Duality: Foundations and Applications is a graduate-level textbook that systematically introduces the AdS/CFT correspondence and its uses in high-energy physics, quantum field theory, and related areas.
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E.
Wilsonian renormalization group
The Wilsonian renormalization group is a framework in theoretical physics that explains how a system’s behavior changes with scale by systematically integrating out short-distance degrees of freedom, providing deep insight into critical phenomena and quantum field theories.
- F. None of above. chosen
- G. Unsure - the case is ambiguous/there is not enough information to decide.
Target entity: Simons Collaboration on the Non-Perturbative Bootstrap Target entity description: The Simons Collaboration on the Non-Perturbative Bootstrap is a research initiative that brings together theoretical physicists and mathematicians to develop and apply bootstrap methods for understanding strongly coupled quantum field theories and conformal field theories beyond perturbation theory.
-
A.
Gauge Theory Correlators from Non-Critical String Theory
"Gauge Theory Correlators from Non-Critical String Theory" is a research paper that explores how non-critical string theory can be used to compute correlation functions in gauge theories, contributing to the development and understanding of the AdS/CFT correspondence.
-
B.
’t Hooft coupling
The ’t Hooft coupling is a rescaled gauge coupling constant, central in large-N gauge theory and string theory, that remains finite in the ’t Hooft large-N limit and controls the strength of interactions.
-
C.
Renormalization and Galois Theories
Renormalization and Galois Theories is a mathematical physics work that connects the renormalization process in quantum field theory with Galois theory and motives, revealing deep arithmetic and geometric structures underlying quantum phenomena.
-
D.
Gauge/Gravity Duality: Foundations and Applications
Gauge/Gravity Duality: Foundations and Applications is a graduate-level textbook that systematically introduces the AdS/CFT correspondence and its uses in high-energy physics, quantum field theory, and related areas.
-
E.
Wilsonian renormalization group
The Wilsonian renormalization group is a framework in theoretical physics that explains how a system’s behavior changes with scale by systematically integrating out short-distance degrees of freedom, providing deep insight into critical phenomena and quantum field theories.
- F. None of above. chosen
Referenced by (1)
Full triples — surface form annotated when it differs from this entity's canonical label.