Classical and Quantum Strings in plane waves, shock waves and spacetime singularities: synthesis and new results
Norma G. Sanchez

TL;DR
This paper synthesizes classical and quantum string behavior in various gravitational backgrounds, classifies spacetime singularities based on string dynamics, and provides new insights into string interactions with singularities and their physical implications.
Contribution
It offers a comprehensive classification of spacetime singularities in string theory and analyzes string dynamics and scattering in these backgrounds, including new results on singularity crossing.
Findings
Strings in strong singularities do not cross and are non-oscillatory.
In weak singularities, strings oscillate and can cross, with outgoing states present.
String scattering and excitation are physically consistent across different singularity types.
Abstract
Key issues of classical and quantum strings in gravitational plane waves, shock waves and spacetime singularities are synthetically understood. This includes the string mass and mode number excitations, energy-momentum tensor, scattering amplitudes, vaccum polarization and wave-string polarization effect. The role of the real pole singularities characteristic of the tree level string spectrum (real mass resonances) and that of spacetime singularities is clearly exhibited. This throws light on the issue of singularities in string theory which can be thus classified and fully physically characterized in two different sets: strong singularities (poles of order equal or larger than 2, and black holes), where the string motion is collective and non oscillating in time, outgoing and scattering states do not appear, the string does not cross the singularities, and weak singularities (poles of…
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