
TL;DR
This paper reviews the physics of strings in curved spacetimes, covering classical and quantum propagation, exact solutions, phenomena like string stretching near singularities, and integrable models in de Sitter space.
Contribution
It provides a comprehensive review of string behavior in various curved spacetimes, including new insights into string stretching and exact solvable models.
Findings
String propagation in shock waves and singular plane waves is physically meaningful.
String stretching occurs near spacetime singularities and in expanding universes.
In de Sitter space, string equations reduce to integrable sinh-Gordon equations.
Abstract
Progress on the physics of strings in curved spacetime are comprehensively reviewed.We start by showing through renormalization group arguments that a meaningful quantum theory of gravity must be finite and must include all particle physics.Then, we review classical and quantum string propagation in curved spacetimes.We start by the general expansion method proposed by de Vega and S\'anchez in 1987. The particle transmutation phenomena in asymptotically flat spacetimes are detailed including fermion-boson transitions in supergravity backgrounds.The next chapters review the exactly solvable cases of string propagation: shock waves, singular plane waves, conical spacetimes and de Sitter cosmological spacetime. The calculation of various physical quantities like the string mass and the energy-momentum tensor shows that classical and quantum string propagation in shock-waves and singular…
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Taxonomy
TopicsPlanetary Science and Exploration · Astro and Planetary Science · Relativity and Gravitational Theory
