On the Hagedorn Behaviour of Singular Scale-Invariant Plane Waves
arXiv:hep-th/0412228 · doi:10.1088/1126-6708/2005/10/047
Abstract
As a step towards understanding the properties of string theory in time-dependent and singular spacetimes, we study the divergence of density operators for string ensembles in singular scale-invariant plane waves, i.e. those plane waves that arise as the Penrose limits of generic power-law spacetime singularities. We show that the scale invariance implies that the Hagedorn behaviour of bosonic and supersymmetric strings in these backgrounds, even with the inclusion of RR or NS fields, is the same as that of strings in flat space. This is in marked contrast to the behaviour of strings in the BFHP plane wave which exhibit quantitatively and qualitatively different thermodynamic properties.
15 pages, LaTeX2e, v2: JHEP3.cls, one reference added
Cited by in corpus (7)
- Physics of String Flux Compactifications
- Scalar Field Probes of Power-Law Space-Time Singularities
- Nonequilibrium dynamics of strings in time-dependent plane wave backgrounds
- A note on the universality of the Hagedorn behavior of pp-wave strings
- Aspects of Plane Wave (Matrix) String Dynamics
- Quantization of Open strings in time dependent Black Holes
- On the Hagedorn behavior of the superstring propating in a cosmological time dependent background