Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/50020
Title: Finite-resolution limits on quantum uniqueness
Authors: Ariwahjoedi, Seramika
Mir, Sameer Ahmad
MIR, Faizal 
Issue Date: 2026
Publisher: ELSEVIER
Source: Physics letters. B, 880 (Art N° 140853)
Abstract: The Stone-von Neumann theorem makes canonical quantization unique only after one imposes strong continuity of the Weyl translation groups. We show that this continuity assumption cannot be certified by any finite-resolution interrogation of the Weyl relations. A finite protocol probes only finitely many phase-space displacements and bounded expectation values, thereby determining a protocol algebra CS generated by a finitely generated subgroup of Weyl translations, but not the regularity of an extension to the full Weyl algebra. Using the polymer representation as a canonical non-regular representation, we prove that for every regular Weyl representation, every normal state, and every finite family of bounded protocol observables, a polymer state reproduces the same expectation values to arbitrary prescribed accuracy. Thus finite agreement with Schr & ouml;dinger quantum mechanics does not operationally certify the regularity hypothesis entering uniqueness. The result does not assert physical equivalence between regular and polymer quantizations, it identifies where additional input, such as Hamiltonian dynamics, energy regularity, semiclassicality, or a continuum limit, is required to distinguish or select representations. In this precise sense, non-regular polymer kinematics are not excluded by finite Weyl data alone, a point of direct relevance to quantum-gravity motivated quantizations.
Notes: Mir, SA (corresponding author), Canadian Quantum Res Ctr, 204-3002 32 Ave, Vernon, BC V1T 2L7, Canada.
ceramyca@gmail.com; sameerphst@gmail.com; mirfaizalmir@googlemail.com
Keywords: Weyl algebra (Weyl relations);Stone-von Neumann theorem;Strong continuity / regular representations;Polymer representation (polymer quantization);Canonical quantization and uniqueness;Finite-resolution operational protocols
Document URI: http://hdl.handle.net/1942/50020
ISSN: 0370-2693
e-ISSN: 1873-2445
DOI: 10.1016/j.physletb.2026.140853
ISI #: 001857104900001
Rights: 2026 The Author(s). Published by Elsevier B.V. Funded by SCOAP³. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
Category: A1
Type: Journal Contribution
Appears in Collections:Research publications

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