Particle creation and particle number in an expanding universe
arXiv:1205.5616 · doi:10.1088/1751-8113/45/37/374023
Abstract
I describe the logical basis of the method that I developed in 1962 and 1963 to define a quantum operator corresponding to the observable particle number of a quantized free scalar field in a spatially-flat isotropically expanding (and/or contracting) universe. This work also showed for the first time that particles were created from the vacuum by the curved space-time of an expanding spatially-flat FLRW universe. The same process is responsible for creating the nearly scale-invariant spectrum of quantized perturbations of the inflaton scalar field during the inflationary stage of the expansion of the universe. I explain how the method that I used to obtain the observable particle number operator involved adiabatic invariance of the particle number (hence, the name adiabatic regularization) and the quantum theory of measurement of particle number in an expanding universe. I also show how I was led in a surprising way, to the discovery in 1964 that there would be no particle creation by these spatially-flat FLRW universes for free fields of any integer or half-integer spin satisfying field equations that are invariant under conformal transformations of the metric. The methods I used to define adiabatic regularization for particle number, were based on generally-covariant concepts like adiabatic invariance and measurement that were fundamental and determined results that were unique to each given adiabatic order.
22 pages, no figures, submitted 7May2012 to J. Phys. A for a special issue honoring Prof. Stuart Dowker
Cited by in corpus (43)
- Advances in QED with intense background fields
- Cosmological Particle Production: A Review
- No-go for the formation of heavy mass Primordial Black Holes in Single Field Inflation
- The Higgs Portal to Cosmology
- Renormalized stress-energy tensor for spin-1/2 fields in expanding universes
- Non-adiabatic cosmological production of ultra-light Dark Matter
- Gravitational production of nearly thermal fermionic Dark Matter
- Adiabatic expansions for Dirac fields, renormalization, and anomalies
- Equivalence of Adiabatic and DeWitt-Schwinger renormalization schemes
- Large fluctuations and Primordial Black Holes
- Quantum Cosmological Perturbations of Multiple Fluids
- Adiabatic regularization with a Yukawa interaction
- Spin 1/2 field and regularization in de Sitter and radiation dominated universe
- Energy-Momentum Squared Gravity: A Brief Overview
- On the origin of entropy of gravitationally produced dark matter: the entanglement entropy
- Particle decay in post inflationary cosmology
- Quantum gravity on polygons and FLRW model
- Relativistic quantum clocks
- Breaking of adiabatic invariance in the creation of particles by electromagnetic fields
- Particle creation and reheating in a braneworld inflationary scenario
- Measuring Unruh radiation from accelerated electrons
- Equivalence of the adiabatic expansion and Hadamard renormalization for a charged scalar field
- Observational Hubble parameter data constraints on the interactive model of gravity with particle creation
- Classical Larmor formula through the Unruh effect for uniformly accelerated electrons
- Inclusive probability of particle creation on classical backgrounds
- R-summed form of adiabatic expansions in curved spacetime
- QED Plasma at High Temperature
- From Barthel Randers Kropina Geometries to the Accelerating Universe: A Brief Review of Recent Advances in Finslerian Cosmology
- Cosmological particle creation in a hadronic fluid
- Is the effective potential, effective for dynamics?
- Thermodynamics of the Primordial Universe
- Modified Gravity with Nonminimal Curvature-Matter Couplings: A Framework for Gravitationally Induced Particle Creation
- Atom-field dynamics in curved spacetime
- Prediction of the Expansion of the Universe made by Alexander Friedmann and the Effect of Particle Creation in Cosmology
- Ultralight dark matter or dark radiation cosmologically produced from infrared dressing
- Renormalized stress tensor of a quantized massless scalar field in warped cosmological braneworld background
- Dynamically Induced Topological Inflation
- Unruh-DeWitt Particle Detectors in Bouncing Cosmologies
- The physics of adiabatic particle number in the Schwinger effect
- Particle creation by a massless spin- field in a warped cosmological braneworld scenario
- Anisotropic expansion of the Universe and generation of quantum interference in light propagation
- Correspondence between particle creation and dark components interaction in the context of gravity
- The cost of building a wall for a fermion