Particlelike solutions in modified gravity: The Higgs monopole

Sandrine Schlögel, Massimiliano Rinaldi, François Staelens, and André Füzfa
Phys. Rev. D 90, 044056 – Published 20 August 2014

Abstract

Higgs inflation has received remarkable attention in the last few years due to its simplicity and predictive power. The key point of this model is the nonminimal coupling to gravity in unitary gauge. As such, this theory is in fact a scalar-tensor modification of gravity that needs to be studied also below the energy scales of inflation. Motivated by this goal, we study in great analytical and numerical detail the static and spherically symmetric solutions of the equations of motion in the presence of standard baryonic matter, called “Higgs monopoles” and presented in Füzfa et al. [Phys. Rev. Lett. 111, 12 (2013)]. These particlelike solutions may arise naturally in tensor-scalar gravity with Mexican hat potential and are the only globally regular asymptotically flat solutions with finite classical energy. In the case when the parameters of the potential are taken to be the ones of the standard model, we find that the deviations from general relativity are extremely small, especially for bodies of astrophysical size and density. This allows us to derive a simplified description of the monopole, for which the metric inside the spherical matter distribution can be approximated by the standard metric of general relativity. We study how the properties of these monopoles depend on the strength of the nonminimal coupling to gravity and on the baryonic mass and compactness. An important and original result is the existence of a mechanism of resonant amplification of the Higgs field inside the monopole that comes into play for large nonminimal coupling. We show that this mechanism might degenerate into divergences of the Higgs field that reveal the existence of forbidden combinations of radius and baryonic energy density.

  • Figure
  • Figure
  • Figure
  • Figure
  • Figure
  • Figure
  • Figure
10 More
  • Received 27 May 2014

DOI:https://doi.org/10.1103/PhysRevD.90.044056

© 2014 American Physical Society

Authors & Affiliations

Sandrine Schlögel1,2,*, Massimiliano Rinaldi1,3,†, François Staelens1, and André Füzfa1,2,‡

  • 1Namur Center for Complex Systems (naXys) & Département de Mathématique, Université de Namur, Rue de Bruxelles 61, B-5000 Namur, Belgium
  • 2Centre for Cosmology, Particle Physics and Phenomenology, Institute of Mathematics and Physics, Louvain University, 2 Chemin du Cyclotron, 1348 Louvain-la-Neuve, Belgium
  • 3Dipartimento di Fisica, Università di Trento & TIFPA-INFN Trento, Via Sommarive 14, 38123 Povo (TN), Italy

  • *sandrine.schlogel@unamur.be
  • massimiliano.rinaldi@unitn.it
  • andre.fuzfa@unamur.be

See Also

Particlelike Distributions of the Higgs Field Nonminimally Coupled to Gravity

André Füzfa, Massimiliano Rinaldi, and Sandrine Schlögel
Phys. Rev. Lett. 111, 121103 (2013)

Article Text (Subscription Required)

Click to Expand

References (Subscription Required)

Click to Expand
Issue

Vol. 90, Iss. 4 — 15 August 2014

Reuse & Permissions
Access Options
Author publication services for translation and copyediting assistance advertisement

Authorization Required


×
×

Images

×

Sign up to receive regular email alerts from Physical Review D

Log In

Cancel
×

Search


Article Lookup

Paste a citation or DOI

Enter a citation
×