Particles in finite volumes and a toy model of decaying neutrons
arXiv:2504.16784 · doi:10.1140/epjc/s10052-025-14467-5
Abstract
It is well-known that the momentum spectra of particles confined to finite spatial volumes deviate from the continuous spectra used for unconfined particles. In this article, we consider real scalar particles confined to finite volumes with periodic boundary conditions, such that the particles' spectra are discrete. We directly compute the density matrices describing the decay processes and , and subsequently derive expressions for the decay probabilities both for confined and unconfined particles. The latter decay process is used as a rough toy model for a neutron decaying into a proton, an electron, and an anti-electron neutrino. We propose that finite volume effects can have an impact on the outcomes of experiments measuring the neutron lifetime. In addition, our findings at the toy model level suggest that taking into account possible initial correlations between neutrons and their daughter particles might be relevant as well.
28 pages, 3 figures, as published in EPJC
References in corpus (21)
- Measurement of the Weak Axial-Vector Coupling Constant in the Decay of Free Neutrons Using a Pulsed Cold Neutron Beam
- Neutron to Mirror-Neutron Oscillations in the Presence of Mirror Magnetic Fields
- Exotic decay channels are not the cause of the neutron lifetime anomaly
- Three-particle finite-volume formalism for and related systems
- Constraints on the Dark Matter Interpretation of the Neutron Decay Anomaly with the PERKEO II experiment
- Charged particles interaction in both a finite volume and a uniform magnetic field
- Dilaton-induced open quantum dynamics
- A new method for directly computing reduced density matrices
- Neutron Dark Decay
- Finite Volume Effects in Thermal Field Theory
- Neutron lifetime anomaly and mirror matter theory
- Quantum field theory with dynamical boundary conditions and the Casimir effect: Coherent states
- Neutron Lifetime Anomaly and Big Bang Nucleosynthesis
- Density matrix formalism for interacting quantum fields
- Evolution of confined quantum scalar fields in curved spacetime. Part II
- Classical and quantum field theory in a box with moving boundaries: A numerical study of the Dynamical Casimir Effect
- Frequency shifts induced by light scalar fields
- Quantum mechanics of fermion confined to a curved surface in Foldy-Wouthuysen representation
- Double-well instantons in finite volume
- SPECT: A spin-flip loaded magnetic ultracold neutron trap for a determination of the neutron lifetime
- Finite volume form factors in integrable theories