Deformed Integrable Models from Holomorphic Chern-Simons Theory
arXiv:2105.06826 · doi:10.1007/s11433-022-1931-x
Abstract
We study the approaches to two-dimensional integrable field theories via a six-dimensional(6D) holomorphic Chern-Simons theory defined on twistor space. Under symmetry reduction, it reduces to a four-dimensional Chern-Simons theory, while under solving along fibres it leads to four-dimensional(4D) integrable theory, the anti-self-dual Yang-Mills or its generalizations. From both four-dimensional theories, various two-dimensional integrable field theories can be obtained. In this work, we try to investigate several two-dimensional integrable deformations in this framework. We find that the -deformation, the rational -deformation and the generalized -deformation can not be realized from 4D integrable model approach, even though they could be obtained from 4D Chern-Simons theory. The obstacle stems from the incompatibility between the symmetry reduction and the boundary conditions. Nevertheless, we show that a coupled theory of -deformation and the -deformation in the trigonometric description could be obtained from the 6D theory in both ways, by considering the case that -form in the 6D theory is allowed to have zeros.
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Cited by in corpus (7)
- 4-dimensional Chern-Simons theory and integrable field theories
- Twistors, the ASD Yang-Mills equations, and 4d Chern-Simons theory
- Integrable Deformations from Twistor Space
- Geometry of the spectral parameter and renormalisation of integrable -models
- Holographic Complexity and Phase Transition for AdS Black Holes
- Topological 4D gravity and gravitational defects
- Four-Dimensional Chern-Simons and Gauged Sigma Models