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Non-Lorentzian Ka\v{c}-Moody Algebras

High Energy Physics - Theory 2023-03-22 v1

Abstract

We investigate two dimensional (2d) quantum field theories which exhibit Non- Lorentzian Ka\v{c}-Moody (NLKM) algebras as their underlying symmetry. Our investigations encompass both 2d Galilean (speed of light cc \rightarrow \infty) and Carrollian (c0c \rightarrow 0) CFTs with additional number of infinite non-Abelian currents, stemming from an isomorphism between the two algebras. We alternate between an intrinsic and a limiting analysis. Our NLKM algebra is constructed first through a contraction and then derived from an intrinsically Carrollian perspective. We then go on to use the symmetries to derive a Non-Lorentzian (NL) Sugawara construction and ultimately write down the NL equivalent of the Knizhnik Zamolodchikov equations. All of these are also derived from contractions, thus providing a robust cross-check of our analyses.

Keywords

Cite

@article{arxiv.2301.04686,
  title  = {Non-Lorentzian Ka\v{c}-Moody Algebras},
  author = {Arjun Bagchi and Ritankar Chatterjee and Rishabh Kaushik and Amartya Saha and Debmalya Sarkar},
  journal= {arXiv preprint arXiv:2301.04686},
  year   = {2023}
}

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56 pages