Painless causality in defect calculations
arXiv:astro-ph/9702041 · doi:10.1103/PhysRevD.56.1982
Abstract
Topological defects must respect causality, a statement leading to restrictive constraints on the power spectrum of the total cosmological perturbations they induce. Causality constraints have for long been known to require the presence of an under-density in the surrounding matter compensating the defect network on large scales. This so-called compensation can never be neglected and significantly complicates calculations in defect scenarios, eg. computing cosmic microwave background fluctuations. A quick and dirty way to implement the compensation are the so-called compensation fudge factors. Here we derive the complete photon-baryon-CDM backreaction effects in defect scenarios. The fudge factor comes out as an algebraic identity and so we drop the negative qualifier ``fudge''. The compensation scale is computed and physically interpreted. Secondary backreaction effects exist, and neglecting them constitutes the well-defined approximation scheme within which one should consider compensation factor calculations. We quantitatively assess the accuracy of this approximation, and conclude that the considerable pains associated with improving on it are often a waste of effort.
Cited by in corpus (9)
- Cosmic Structure Formation with Topological Defects
- Cosmic Microwave Background Anisotropies from Scaling Seeds: Global Defect Models
- Cosmic-String-Seeded Structure Formation
- Cosmological Perturbations seeded by Topological Defects: Setting the Initial Conditions
- Topological Defects and CMB anisotropies : Are the predictions reliable ?
- Cosmological parameter dependence in local string theories of structure formation
- The bispectrum of matter perturbations from cosmic strings
- Dark matter from cosmic defects on galactic scales?
- Diffractive D_s production in charged current DIS