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arXiv · 2512.11696

Quotient branching laws and unitary Gan-Gross-Prasad relevance for general linear groups

Abstract

This article addresses the quotient branching problem for the pair $(\mathrm{GL}_{n+1}(F), \mathrm{GL}_n(F))$ over a non-archimedean local field $F$. We present two primary contributions. First, we explicate Chan's recent general solution by providing a practical, step-by-step combinatorial algorithm to determine whether the space $\mathrm{Hom}_{\mathrm{GL}_n(F)}(π, π')$ is non-zero for any irreducible smooth representations $π$ and $π'$. This algorithm is designed to be verifiable by hand, given the representations' Langlands or Zelevinsky parameters. Second, we specialize to the unitary case, where we establish a unifying equivalence: a pair of irreducible unitary representations satisfies Chan's generalized GGP relevance criterion if and only if it satisfies a natural extension of the original Gan--Gross--Prasad relevance condition. This result resolves a previous inconsistency in the literature, corrects and extends prior work by Gurevich, and provides a complete, explicit criterion for unitary branching laws.

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BibTeXRIS

Basudev Pattanayak. 2026-08-03. Quotient branching laws and unitary Gan-Gross-Prasad relevance for general linear groups. https://arxiv.org/abs/2512.11696

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