Phys. Rev. D 58, 073001 (1998) [16 pages]

Finite-size effects on multibody neutrino exchange

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A. Abada *
Theory Division, CERN, CH-1211 Geneva 23, Switzerland

O. Pène
Laboratoire de Physique Théorique et Hautes Energies, Université de Paris XI, Bâtiment 211, 91405 Orsay Cedex, France

J. Rodríguez-Quintero
Departamento de Física Atómica, Molecular y Nuclear, Universidad de Sevilla, P.O. Box 1065, 41080 Sevilla, Spain

Received 24 February 1998; published 13 August 1998

We use an effective Lagrangian to study the multibody massless neutrino exchange inside a finite neutron star. Following Schwinger, we show how the total interaction energy density is computed by comparing the values of the zero-point energy of the neutrino sea with and without the star. Here we extend a previous one-dimensional toy computation by using a three-dimensional spherical model of the star. We find that there is a nonvanishing of the zero-point energy density difference between the inside and the outside due to the refraction index at the stellar boundary and the resulting nonpenetrating waves. This effect is shown analytically and numerically to be the dominant one and to lead to an infrared-safe total energy density, thus confirming that there is no need for the neutrino to be massive. Altogether, the energy due to neutrino exchange is of the order of 10-8-10-13 GeV per neutron, i.e., negligible with respect to the neutron mass density.


©1998 The American Physical Society

URL: http://link.aps.org/doi/10.1103/PhysRevD.58.073001
DOI: 10.1103/PhysRevD.58.073001
PACS: 13.15.+g, 14.60.Pq, 97.60.Jd

* Email address: abada@mail.cern.ch
Email address: jquinter@cica.es
Email address: pene@qcd.th.u-psud.fr.

See Also

Addendum: A. Abada, O. Pène, and J. Rodríguez-Quintero, Addendum to “Finite-size effects on multibody neutrino exchange”, Phys. Rev. D 59, 077302 (1999)

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