Gravitational wave background from Standard Model physics: Qualitative features
arXiv:1504.02569 · doi:10.1088/1475-7516/2015/07/022
Abstract
Because of physical processes ranging from microscopic particle collisions to macroscopic hydrodynamic fluctuations, any plasma in thermal equilibrium emits gravitational waves. For the largest wavelengths the emission rate is proportional to the shear viscosity of the plasma. In the Standard Model at T > 160 GeV, the shear viscosity is dominated by the most weakly interacting particles, right-handed leptons, and is relatively large. We estimate the order of magnitude of the corresponding spectrum of gravitational waves. Even though at small frequencies (corresponding to the sub-Hz range relevant for planned observatories such as eLISA) this background is tiny compared with that from non-equilibrium sources, the total energy carried by the high-frequency part of the spectrum is non-negligible if the production continues for a long time. We suggest that this may constrain (weakly) the highest temperature of the radiation epoch. Observing the high-frequency part directly sets a very ambitious goal for future generations of GHz-range detectors.
19 pages. v2: clarifications and references added, published version
References in corpus (21)
- Gravitational Wave Production by Collisions: More Bubbles
- The Sphaleron Rate in the Minimal Standard Model
- A Gravitational Wave Background from Reheating after Hybrid Inflation
- Gravitational waves from stochastic relativistic sources: primordial turbulence and magnetic fields
- A new cosmic microwave background constraint to primordial gravitational waves
- The Spectrum of Gravitational Radiation from Primordial Turbulence
- Gravitational Waves from Abelian Gauge Fields and Cosmic Strings at Preheating
- Exact Scale-Invariant Background of Gravitational Waves from Cosmic Defects
- Gravitional radiation from first-order phase transitions in the presence of a fluid
- Search for a stochastic background of 100-MHz gravitational waves with laser interferometers
- Stochastic Gravitational Wave Background from Light Cosmic Strings
- Perturbative Photon Fluxes Generated by High-Frequency Gravitational Waves and Their Physical Effects
- Gravitational Waves From the End of Inflation: Computational Strategies
- A Nearly Scale Invariant Spectrum of Gravitational Radiation from Global Phase Transitions
- Thermal momentum distribution from path integrals with shifted boundary conditions
- Right-handed neutrino production rate at T > 160 GeV
- Using polarized maser to detect high-frequency relic gravitational waves
- Improved constraint on the primordial gravitational-wave density using recent cosmological data and its impact on cosmic string models
- Gravity waves generated by sounds from big bang phase transitions
- Secondary graviton spectra and waterfall-like fields
- Stochastic background of gravitational waves from cosmological sources
Cited by in corpus (60)
- Science with the space-based interferometer eLISA. II: Gravitational waves from cosmological phase transitions
- Cosmological Backgrounds of Gravitational Waves
- Numerical simulations of acoustically generated gravitational waves at a first order phase transition
- Challenges and Opportunities of Gravitational Wave Searches at MHz to GHz Frequencies
- Gravitational Waves From a Dark (Twin) Phase Transition
- Primordial gravitational waves, precisely: The role of thermodynamics in the Standard Model
- Detecting High-Frequency Gravitational Waves with Microwave Cavities
- The Gravitational-Wave Physics
- Perturbative Thermal QCD: Formalism and Applications
- Gravitational Waves as a Big Bang Thermometer
- Cosmological Background Interpretation of Pulsar Timing Array Data
- Gravitational wave background from Standard Model physics: Complete leading order
- Electromagnetic Antennas for the Resonant Detection of the Stochastic Gravitational Wave Background
- MAGO2.0: Electromagnetic Cavities as Mechanical Bars for Gravitational Waves
- Gravitational Wave from Graviton Bremsstrahlung during Reheating
- Freezing-In Gravitational Waves
- Revealing the Cosmic History with Gravitational Waves
- Ultrahigh frequency primordial gravitational waves beyond the kHz: The case of cosmic strings
- Gravitational wave background from non-Abelian reheating after axion-like inflation
- Challenges and Opportunities of Gravitational Wave Searches above 10 kHz
- Gravitational wave background from vacuum and thermal fluctuations during axion-like inflation
- Measuring Inflaton Couplings via Primordial Gravitational Waves
- Upper Bound on Thermal Gravitational Wave Backgrounds from Hidden Sectors
- Testing BSM Physics with Gravitational Waves
- Gravitational wave search through electromagnetic telescopes
- Scalar field couplings to quadratic curvature and decay into gravitons
- The Cosmological Heavy Ion Collider: Fast Thermalization after Cosmic Inflation
- An introduction to Thermal Field Theory and Some of its Application
- Searching for High Frequency Gravitational Waves with Phonons
- LiteBIRD and CMB-S4 Sensitivities to Reheating in Plateau Models of Inflation
- Relativistic viscous effects on the primordial gravitational waves spectrum
- Enhanced primordial gravitational waves from a stiff post-inflationary era due to an oscillating inflaton
- Double-graviton production from Standard Model plasma
- -channel singularities in cosmology and particle physics
- Maximal temperature of strongly-coupled dark sectors
- Fast Likelihood-free Reconstruction of Gravitational Wave Backgrounds
- Universal Hz stochastic gravitational waves from photon spheres of black holes
- Hydrodynamic fluctuations from a weakly coupled scalar field
- Connecting Cosmic Inflation to Particle Physics with LiteBIRD, CMB-S4, EUCLID and SKA
- Classical (and Quantum) Heuristics for Gravitational Wave Detection
- On Sphaleron Heating in the Presence of Fermions
- Update on gravitational wave signals from post-inflationary phase transitions
- Thermal Emission of Gravitational Waves from Weak to Strong Coupling
- Cosmic superstrings in large volume compactifications: PTAs, LISA and time-varying tension
- Thermal Gravitons from Warm Inflation
- Introduction to Thermal Field Theory: From First Principles to Applications
- Graviton-photon conversion in blazar jets as a probe of high-frequency gravitational waves
- Graviton-photon conversion in stochastic magnetic fields
- Thermal evolution of dark matter and gravitational-wave production in the early universe from a symplectic glueball model
- Gauss-Bonnet Cosmology: large-temperature behaviour and bounds from Gravitational Waves
- Chiral gravitational waves from thermalized neutrinos in the early Universe
- An SZ-Like Effect on Cosmological Gravitational Wave Backgrounds
- An Upper Limit on the Initial Temperature of the Radiation-Dominated Universe
- Freeze-in gravitational waves and dark matter in warm inflation
- A New Source of Phase Transition Gravitational Waves: Heavy Particle Braking Across Bubble Walls
- High-frequency gravitational waves from first-order phase transitions
- Stochastic gravitational wave from graviton bremsstrahlung in inflaton decay into massive spin 3/2 particles
- Baryogenesis via relativistic bubble expansion
- The spectrum of tensor perturbations in warm inflation
- AliCPT Sensitivity to Cosmic Reheating