Gravitational waves from cosmic strings for pedestrians
arXiv:2412.20907 · doi:10.1088/1475-7516/2026/01/025
Abstract
Cosmic strings represent an attractive source of gravitational waves (GWs) from the early Universe. However, numerical computation of the GW signal from cosmic strings requires the evaluation of complicated integral and sum expressions, which can become computationally costly in large parameter scans. This motivates us to rederive the GW signal from a network of local stable cosmic strings in the Nambu-Goto approximation and based on the velocity-dependent one-scale model from a ``pedestrian'' perspective. That is, we derive purely analytical expressions for the total GW spectrum, which remain exact wherever possible and whose error can be tracked and reduced in a controlled way in crucial situations in which we are forced to introduce approximations. In this way, we obtain powerful formulas that, unlike existing results in the literature, are valid across the entire frequency spectrum and across the entire conceivable range of cosmic-string tensions. We provide an in-depth discussion of the GW spectra thus obtained, including their characteristic break frequencies and approximate power-law behaviors, comment on the effect of changes in the effective number of degrees of freedom during radiation domination, and conclude with a concise summary of our main formulas that can readily be used in future studies.
58 pages, 16 figures, summary box at the end of the paper; v2: references added, discussion on small initial loop lengths added, minor corrections to the text and the plots, matches version published in JCAP
References in corpus (58)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array
- Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I
- Interferometer design of the KAGRA gravitational wave detector
- The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals
- Detector configuration of KAGRA - the Japanese cryogenic gravitational-wave detector
- The NANOGrav 15-year Data Set: Search for Signals from New Physics
- Cosmic F- and D-strings
- Detecting the Cosmic Gravitational Wave Background with the Big Bang Observer
- The North American Nanohertz Observatory for Gravitational Waves
- How generic is cosmic string formation in SUSY GUTs
- Science with the Square Kilometer Array: Motivation, Key Science Projects, Standards and Assumptions
- The number of cosmic string loops
- Planck 2013 results. XXV. Searches for cosmic strings and other topological defects
- Formation and evolution of cosmic D-strings
- Cosmological evolution of cosmic string loops
- Probing the gravitational wave background from cosmic strings with LISA
- Stochastic gravitational wave background from smoothed cosmic string loops
- Constraints on cosmic string tension imposed by the limit on the stochastic gravitational wave background from the European Pulsar Timing Array
- Beyond the Standard Models with Cosmic Strings
- Probing the pre-BBN universe with gravitational waves from cosmic strings
- Cosmic string loop distribution on all length scales and at any redshift
- Exact Scale-Invariant Background of Gravitational Waves from Cosmic Defects
- CMB constraints on cosmic strings and superstrings
- Stochastic gravitational waves from cosmic string loops in scaling
- Stochastic Gravitational Wave Background generated by Cosmic String Networks: Velocity-Dependent One-Scale model versus Scale-Invariant Evolution
- Cosmic String constraints from WMAP and the South Pole Telescope
- The Gravitational Wave Spectrum from Cosmological B-L Breaking
- Gravitational waves from first-order phase transitions in LISA: reconstruction pipeline and physics interpretation
- Full analytical approximation to the stochastic gravitational wave background generated by cosmic string networks
- Precise WIMP Dark Matter Abundance and Standard Model Thermodynamics
- Unified model for vortex-string network evolution
- Particle emission and gravitational radiation from cosmic strings: observational constraints
- The 21 cm Signature of Cosmic String Wakes
- Probing Cosmic Superstrings with Gravitational Waves
- Irreducible background of gravitational waves from a cosmic defect network: update and comparison of numerical techniques
- Using a Primordial Gravitational Wave Background to Illuminate New Physics
- Gravitational Wave Bursts from Cosmic Superstrings with Y-junctions
- Early Structure Formation from Cosmic String Loops in Light of Early JWST Observations
- Microlensing by Cosmic Strings
- CMB Distortions from Superconducting Cosmic Strings
- Cosmic string loop production functions
- Ultrahigh frequency primordial gravitational waves beyond the kHz: The case of cosmic strings
- Cosmic strings from pure Yang-Mills theory
- Observing cosmic string loops with gravitational lensing surveys
- Direct determination of cosmic string loop density from simulations
- All sky CMB map from cosmic strings integrated Sachs-Wolfe effect
- One to rule them all: CMB spectral distortions can probe domain walls, cosmic strings and low scale phase transitions
- Cosmic F- and D-strings from pure Yang-Mills theory
- Cosmic String Loop Microlensing
- Impact of the small-scale structure on the Stochastic Background of Gravitational Waves from cosmic strings
- Gravitational wave and particle emission from a cosmic string loop: local case
- Extracting the Signal of Cosmic String Wakes from 21-cm Observations
- Gravitational waves from low-scale cosmic strings
- Stochastic gravitational waves from long cosmic strings
- Cosmic Microwave Background Spectral Distortions from Cosmic String Loops