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Exact WKB methods in SU(2) N$_{f}$ = 1
We study in detail the Schrödinger equation corresponding to the four dimensional SU(2) $ \mathcal{N} $ = 2 SQCD theory with one flavour. We calculate the Voros symbols, or quantum periods, in four different ways: Borel summation of the WKB series, direct computation of Wronskians of exponentially d...
Autores principales: | , , |
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Lenguaje: | eng |
Publicado: |
2021
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Acceso en línea: | https://dx.doi.org/10.1007/JHEP01(2022)046 http://cds.cern.ch/record/2766500 |
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author | Grassi, Alba Hao, Qianyu Neitzke, Andrew |
author_facet | Grassi, Alba Hao, Qianyu Neitzke, Andrew |
author_sort | Grassi, Alba |
collection | CERN |
description | We study in detail the Schrödinger equation corresponding to the four dimensional SU(2) $ \mathcal{N} $ = 2 SQCD theory with one flavour. We calculate the Voros symbols, or quantum periods, in four different ways: Borel summation of the WKB series, direct computation of Wronskians of exponentially decaying solutions, the TBA equations of Gaiotto-Moore-Neitzke/Gaiotto, and instanton counting. We make computations by all of these methods, finding good agreement. We also study the exact quantization condition for the spectrum, and we compute the Fredholm determinant of the inverse of the Schrödinger operator using the TS/ST correspondence and Zamolodchikov’s TBA, again finding good agreement. In addition, we explore two aspects of the relationship between singularities of the Borel transformed WKB series and BPS states: BPS states of the 4d theory are related to singularities in the Borel transformed WKB series for the quantum periods, and BPS states of a coupled 2d+4d system are related to singularities in the Borel transformed WKB series for local solutions of the Schrödinger equation. |
id | cern-2766500 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2021 |
record_format | invenio |
spelling | cern-27665002023-10-04T08:15:24Zdoi:10.1007/JHEP01(2022)046http://cds.cern.ch/record/2766500engGrassi, AlbaHao, QianyuNeitzke, AndrewExact WKB methods in SU(2) N$_{f}$ = 1hep-thParticle Physics - TheoryMathematical Physics and MathematicsMathematical Physics and MathematicsWe study in detail the Schrödinger equation corresponding to the four dimensional SU(2) $ \mathcal{N} $ = 2 SQCD theory with one flavour. We calculate the Voros symbols, or quantum periods, in four different ways: Borel summation of the WKB series, direct computation of Wronskians of exponentially decaying solutions, the TBA equations of Gaiotto-Moore-Neitzke/Gaiotto, and instanton counting. We make computations by all of these methods, finding good agreement. We also study the exact quantization condition for the spectrum, and we compute the Fredholm determinant of the inverse of the Schrödinger operator using the TS/ST correspondence and Zamolodchikov’s TBA, again finding good agreement. In addition, we explore two aspects of the relationship between singularities of the Borel transformed WKB series and BPS states: BPS states of the 4d theory are related to singularities in the Borel transformed WKB series for the quantum periods, and BPS states of a coupled 2d+4d system are related to singularities in the Borel transformed WKB series for local solutions of the Schrödinger equation.We study in detail the Schrödinger equation corresponding to the four dimensional $SU(2)$ $\mathcal{N}=2$ SQCD theory with one flavour. We calculate the Voros symbols, or quantum periods, in four different ways: Borel summation of the WKB series, direct computation of Wronskians of exponentially decaying solutions, the TBA equations of Gaiotto-Moore-Neitzke/Gaiotto, and instanton counting. We make computations by all of these methods, finding good agreement. We also study the exact quantization condition for the spectrum, and we compute the Fredholm determinant of the inverse of the Schrödinger operator using the TS/ST correspondence and Zamolodchikov's TBA, again finding good agreement. In addition, we explore two aspects of the relationship between singularities of the Borel transformed WKB series and BPS states: BPS states of the 4d theory are related to singularities in the Borel transformed WKB series for the quantum periods, and BPS states of a coupled 2d+4d system are related to singularities in the Borel transformed WKB series for local solutions of the Schrödinger equation.arXiv:2105.03777UTTG 03-2021CERN-TH-2021-071oai:cds.cern.ch:27665002021-05-08 |
spellingShingle | hep-th Particle Physics - Theory Mathematical Physics and Mathematics Mathematical Physics and Mathematics Grassi, Alba Hao, Qianyu Neitzke, Andrew Exact WKB methods in SU(2) N$_{f}$ = 1 |
title | Exact WKB methods in SU(2) N$_{f}$ = 1 |
title_full | Exact WKB methods in SU(2) N$_{f}$ = 1 |
title_fullStr | Exact WKB methods in SU(2) N$_{f}$ = 1 |
title_full_unstemmed | Exact WKB methods in SU(2) N$_{f}$ = 1 |
title_short | Exact WKB methods in SU(2) N$_{f}$ = 1 |
title_sort | exact wkb methods in su(2) n$_{f}$ = 1 |
topic | hep-th Particle Physics - Theory Mathematical Physics and Mathematics Mathematical Physics and Mathematics |
url | https://dx.doi.org/10.1007/JHEP01(2022)046 http://cds.cern.ch/record/2766500 |
work_keys_str_mv | AT grassialba exactwkbmethodsinsu2nf1 AT haoqianyu exactwkbmethodsinsu2nf1 AT neitzkeandrew exactwkbmethodsinsu2nf1 |