Born-Infeld theory and stringy causality
- 12 February 2001
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 63 (6) , 064006
- https://doi.org/10.1103/physrevd.63.064006
Abstract
Fluctuations around a nontrivial solution of Born-Infeld theory have a limiting speed given not by the Einstein metric but the Boillat metric. The Boillat metric is S-duality invariant and conformal to the open string metric. It also governs the propagation of scalars and spinors in Born-Infeld theory. We discuss the potential clash between causality determined by the closed string and open string light cones and find that the latter never lie outside the former. Both cones touch along the principal null directions of the background Born-Infeld field. We consider black hole solutions in situations in which the distinction between bulk and brane is not sharp such as space-filling branes and find that the location of the event horizon and the thermodynamic properties do not depend on whether one uses the closed or open string metric. Analogous statements hold in the more general context of nonlinear electrodynamics or effective quantum-corrected metrics. We show how Born-Infeld action to second order might be obtained from higher-curvature gravity in Kaluza-Klein theory. Finally we point out some intriguing analogies with Einstein-Schrödinger theory.Keywords
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This publication has 36 references indexed in Scilit:
- Brane dynamics from the Born-Infeld actionNuclear Physics B, 1998
- Born-Infeld particles and Dirichlet p-branesNuclear Physics B, 1998
- Electric-magnetic duality rotations in non-linear electrodynamicsNuclear Physics B, 1995
- Unity of superstring dualitiesNuclear Physics B, 1995
- Pair creation of open strings in an electric fieldPhysics Letters B, 1992
- A Stringy Nature Needs Just Two ConstantsEurophysics Letters, 1986
- Nonlinear Electrodynamics: Lagrangians and Equations of MotionJournal of Mathematical Physics, 1970
- Reciprocity Theory of Elementary ParticlesReviews of Modern Physics, 1949
- Contributions to Born’s new theory of the electromagnetic fieldProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1935
- Foundations of the new field theoryProceedings of the Royal Society of London. Series A, Containing Papers of a Mathematical and Physical Character, 1934