Law of elasticity and fracture limit of magnetic forcelines under their gravitational deformation

Author:

Mavrogiannis Panagiotis1ORCID

Affiliation:

1. Section of Astrophysics, Astronomy and Mechanics, Department of Physics, Aristotle University of Thessaloniki, Thessaloniki 54124, Greece

Abstract

Magnetic fields are a very special form of elastic medium. Within astrophysical environments (magnetized stars and protogalaxies) they counteract shear and rotational distortions as well as gravitational collapse. Their vector nature allows for their extraordinary coupling with space–time curvature in the framework of general relativity. This particular coupling points out the way to study magnetic elasticity under gravitational deformation. In this context, we reveal their law of elasticity, calculate their fracture limit and subsequently argue that they ultimately lose the battle against gravitational contraction of magnetized matter. Two illustrative applications, in a neutron star and a white dwarf, accompany the results.

Funder

Hellenic Foundation for Research and Innovation

Foundation for Education and European Culture

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference17 articles.

1. Parker EN. 1979 Cosmical magnetic fields. Oxford, UK: Clarendon Press.

2. Mestel L. 1999 Stellar magnetism. Oxford, UK: Oxford University Press.

3. Gravitational convergence, shear deformation and rotation of magnetic forcelines

4. Magnetic Tension and the Geometry of the Universe

5. Magnetic tension and gravitational collapse

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