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IBS-CGP Post-doc lecture seriesㅣBethe/Gauge correspondence II - Introducing supersymmetry

기간 : 2022-11-23 ~ 2022-11-23
시간 : 16:00 ~ 18:00
개최 장소 : CGP Hall(PIAI 143)
개요
IBS-CGP Post-doc lecture seriesㅣBethe/Gauge correspondence II - Introducing supersymmetry
분야Field
날짜Date 2022-11-23 ~ 2022-11-23 시간Time 16:00 ~ 18:00
장소Place CGP Hall(PIAI 143) 초청자Host
연사Speaker Norton Lee 소속Affiliation IBS Center for Geometry and Physics
TOPIC IBS-CGP Post-doc lecture seriesㅣBethe/Gauge correspondence II - Introducing supersymmetry
소개 및 안내사항Content

Abstract

The study of N=2 supersymmetric Yang-Mills theory in 4 dimensions has been a fruitful field for theoretical physicists. The existence of two sets of supersymmetry allows us to have better detail of understanding comparing to N=1 or non-supersymmetric systems. In this lecture I will introduce Seiberg and Witten's exact low energy solution of the N=2 supersymmetric system in 4 dimension. The Seiberg-Witten curve allows us to study the moduli space of the vacua. Here we will see the first hint of the Bethe/Gauge correspondence in the classical level. Relating the 4 dimensional super Yang-Mills system to the 2 dimensional Toda lattice integrable model.
 
★ Pre-registration is certainly required, please visit https://cgp.ibs.re.kr/
학회명Field IBS-CGP Post-doc lecture seriesㅣBethe/Gauge correspondence II - Introducing supersymmetry
날짜Date 2022-11-23 ~ 2022-11-23 시간Time 16:00 ~ 18:00
장소Place CGP Hall(PIAI 143) 초청자Host
소개 및 안내사항Content

Abstract

The study of N=2 supersymmetric Yang-Mills theory in 4 dimensions has been a fruitful field for theoretical physicists. The existence of two sets of supersymmetry allows us to have better detail of understanding comparing to N=1 or non-supersymmetric systems. In this lecture I will introduce Seiberg and Witten's exact low energy solution of the N=2 supersymmetric system in 4 dimension. The Seiberg-Witten curve allows us to study the moduli space of the vacua. Here we will see the first hint of the Bethe/Gauge correspondence in the classical level. Relating the 4 dimensional super Yang-Mills system to the 2 dimensional Toda lattice integrable model.
 
★ Pre-registration is certainly required, please visit https://cgp.ibs.re.kr/
성명Field IBS-CGP Post-doc lecture seriesㅣBethe/Gauge correspondence II - Introducing supersymmetry
날짜Date 2022-11-23 ~ 2022-11-23 시간Time 16:00 ~ 18:00
소속Affiliation IBS Center for Geometry and Physics 초청자Host
소개 및 안내사항Content

Abstract

The study of N=2 supersymmetric Yang-Mills theory in 4 dimensions has been a fruitful field for theoretical physicists. The existence of two sets of supersymmetry allows us to have better detail of understanding comparing to N=1 or non-supersymmetric systems. In this lecture I will introduce Seiberg and Witten's exact low energy solution of the N=2 supersymmetric system in 4 dimension. The Seiberg-Witten curve allows us to study the moduli space of the vacua. Here we will see the first hint of the Bethe/Gauge correspondence in the classical level. Relating the 4 dimensional super Yang-Mills system to the 2 dimensional Toda lattice integrable model.
 
★ Pre-registration is certainly required, please visit https://cgp.ibs.re.kr/
성명Field IBS-CGP Post-doc lecture seriesㅣBethe/Gauge correspondence II - Introducing supersymmetry
날짜Date 2022-11-23 ~ 2022-11-23 시간Time 16:00 ~ 18:00
호실Host 인원수Affiliation Norton Lee
사용목적Affiliation 신청방식Host IBS Center for Geometry and Physics
소개 및 안내사항Content

Abstract

The study of N=2 supersymmetric Yang-Mills theory in 4 dimensions has been a fruitful field for theoretical physicists. The existence of two sets of supersymmetry allows us to have better detail of understanding comparing to N=1 or non-supersymmetric systems. In this lecture I will introduce Seiberg and Witten's exact low energy solution of the N=2 supersymmetric system in 4 dimension. The Seiberg-Witten curve allows us to study the moduli space of the vacua. Here we will see the first hint of the Bethe/Gauge correspondence in the classical level. Relating the 4 dimensional super Yang-Mills system to the 2 dimensional Toda lattice integrable model.
 
★ Pre-registration is certainly required, please visit https://cgp.ibs.re.kr/
Admin Admin · 2022-11-06 18:53 · 조회 199
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