Quick Navigation

Topics

Quantum Foundations

Physical interpretation of non-normalizable harmonic oscillator states and relaxation to pilot-wave equilibrium

DOAJ
Authors: Indrajit Sen

Year

2024

Paper ID

4558

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

238

Citations

1

Abstract

Abstract Non-normalizable states are difficult to interpret in the orthodox quantum formalism but often occur as solutions to physical constraints in quantum gravity. We argue that pilot-wave theory gives a straightforward physical interpretation of non-normalizable quantum states, as the theory requires only a normalized density of configurations to generate statistical predictions. In order to better understand such states, we conduct the first study of non-normalizable solutions of the harmonic oscillator from a pilot-wave perspective. We show that, contrary to intuitions from orthodox quantum mechanics, the non-normalizable eigenstates and their superpositions are bound states in the sense that the velocity field $vy → 0v y → 0 at largepm y± y . We argue that defining a physically meaningful equilibrium density for such states requires a new notion of equilibrium, named pilot-wave equilibrium, which is a generalisation of the notion of quantum equilibrium. We define a new H-functionHpwH pw , and prove that a density in pilot-wave equilibrium minimisesHpwH pw , is equivariant, and remains in equilibrium with time. We prove an H-theorem for the coarse-grainedHpw$ H pw , under assumptions similar to those for relaxation to quantum equilibrium. We give an explanation of the emergence of quantization in pilot-wave theory in terms of instability of non-normalizable states due to perturbations and environmental interactions. Lastly, we discuss applications in quantum field theory and quantum gravity, and implications for pilot-wave theory and quantum foundations in general.

Why This Paper Matters

  • This paper contributes to the Quantum Foundations research area in the Quantum Articles archive.
  • It adds a 2024 reference point for readers tracking recent quantum research.
  • Abstract Non-normalizable states are difficult to interpret in the orthodox quantum formalism but often occur as solutions to physical constraints in quantum gravity.

Paper Tools

Become a member to use research tools

Sign in to open papers, visit source links, share, cite, compare, copy DOI links, request category corrections, and build your reading list.

Publisher Share Cite This Paper Copy URL Compare Copy DOI Add to Reading List Category Correction Request

References & Citation Signals

Local Citation Graph (Related-Paper Links)

Current Paper #4558 #69036 CARVE-Q: Quantum-Proposed, Clas... #69035 A Modular Approach to Succinct ... #69013 Quantum correlations and cohere... #68989 Quantum correlations in QBism's...

External citation index: OpenAlex citation signal • updated 2026-06-14 04:41:28

Community Reactions

Quick sentiment from readers on this paper.

Score: 0
Likes: 0 Dislikes: 0

Sign in to react to this paper.

Discussion & Reviews (Moderated)

Average Rating: 0.0 / 5 (0 ratings)

No written reviews yet.