English

Dual Pair Correspondence in Physics: Oscillator Realizations and Representations

High Energy Physics - Theory 2020-09-03 v2

Abstract

We study general aspects of the reductive dual pair correspondence, also known as Howe duality. We make an explicit and systematic treatment, where we first derive the oscillator realizations of all irreducible dual pairs: (GL(M,R),GL(N,R))(GL(M,\mathbb R), GL(N,\mathbb R)), (GL(M,C),GL(N,C))(GL(M,\mathbb C), GL(N,\mathbb C)), (U(2M),U(2N))(U^*(2M), U^*(2N)), (U(M+,M),U(N+,N))(U(M_+,M_-), U(N_+,N_-)), (O(N+,N),Sp(2M,R))(O(N_+,N_-),Sp(2M,\mathbb R)), (O(N,C),Sp(2M,C))(O(N,\mathbb C), Sp(2M,\mathbb C)) and (O(2N),Sp(M+,M))(O^*(2N), Sp(M_+,M_-)). Then, we decompose the Fock space into irreducible representations of each group in the dual pairs for the cases where one member of the pair is compact as well as the first non-trivial cases of where it is non-compact. We discuss the relevance of these representations in several physical applications throughout this analysis. In particular, we discuss peculiarities of their branching properties. Finally, closed-form expressions relating all Casimir operators of two groups in a pair are established.

Keywords

Cite

@article{arxiv.2006.07102,
  title  = {Dual Pair Correspondence in Physics: Oscillator Realizations and Representations},
  author = {Thomas Basile and Euihun Joung and Karapet Mkrtchyan and Matin Mojaza},
  journal= {arXiv preprint arXiv:2006.07102},
  year   = {2020}
}

Comments

101 pages, JHEP published version

R2 v1 2026-06-23T16:16:20.571Z