PaperPanorama

arXiv:2603.28379·v2·High Energy Physics — Phenomenology

The force of attraction between nucleons due to vacuum fluctuation

Anupam Ghosh🇮🇳

Abstract

We investigate quantum vacuum interactions arising from the zero-point fluctuations of a spatially confined massive scalar field. Deriving analytical expressions for the planar interaction energy and vacuum pressure, we identify a fundamental transition from the canonical power-law scaling of massless fields to a distinct quantum saturation regime. We prove that in the macroscopic limit, where the boundary separation far exceeds the field's Compton wavelength (), the interaction energy does not vanish; instead, it asymptotes to a persistent constant, . This reveals a cohesive zero-point energy reservoir inherent to massive vacua. Applying this formalism to the femtometer scale of the deuteron (H) nuclei, we demonstrate that confining massive pion fluctuations generates an attractive force between nucleons.

Comments: 6 pages, 3 figures; expanded discussions and 2 new figures added