From Symmetry to Structure: Gauge-Invariant Operators in Multi-Matrix Quantum Mechanics
Abstract
Recently the algebraic structure of gauge-invariant operators in multi-matrix quantum mechanics has been clarified: this space forms a module over a freely generated ring. The ring is generated by a set of primary invariants, while the module structure is determined by a finite set of secondary invariants. In this work, we show that the number of primary invariants can be computed by performing a complete gauge fixing, which identifies the number of independent physical degrees of freedom. We then compare this result to a complementary counting based on the restricted Schur polynomial basis. This comparison allows us to argue that the number of secondary invariants must exhibit exponential growth of the form at large , with a constant.
Keywords
Cite
@article{arxiv.2507.01219,
title = {From Symmetry to Structure: Gauge-Invariant Operators in Multi-Matrix Quantum Mechanics},
author = {Robert de Mello Koch and Minkyoo Kim and Hendrik J. R. Van Zyl},
journal= {arXiv preprint arXiv:2507.01219},
year = {2025}
}
Comments
Accepted by JHEP. 22 pages, 1 figure; v2: Improved description in Section 3