BRST Quantization of Cosmological Perturbations
arXiv:1606.03823 · doi:10.1088/1475-7516/2016/11/016
Abstract
BRST quantization is an elegant and powerful method to quantize theories with local symmetries. In this article we study the Hamiltonian BRST quantization of cosmological perturbations in a universe dominated by a scalar field, along with the closely related quantization method of Dirac. We describe how both formalisms apply to the perturbations in a time-dependent background, and how expectation values of gauge-invariant operators can be calculated in the in-in formalism. Our analysis focuses mostly on the free theory. By appropriate canonical transformations we simplify and diagonalize the free Hamiltonian. BRST quantization in derivative gauges allows us to dramatically simplify the structure of the propagators, whereas quantization in synchronous gauge, which amounts to Dirac quantization, dispenses with the need to introduce ghosts and preserves the locality of the gauge-fixed action.
50 pages, no figures
References in corpus (9)
- On the one loop corrections to inflation and the CMB anisotropies
- Cosmology With Many Light Scalar Fields: Stochastic Inflation and Loop Corrections
- The Zeta-Zeta Correlator Is Time Dependent
- Quantum Cosmological Correlations in an Inflating Universe: Can fermion and gauge fields loops give a scale free spectrum?
- A Concise Introduction to Perturbation Theory in Cosmology
- Path Integral for Inflationary Perturbations
- One-loop corrections to the power spectrum in general single-field inflation
- Complete Hamiltonian analysis of cosmological perturbations at all orders II: Non-canonical scalar field
- General Covariance Constraints on Cosmological Correlators