Charting the Nanohertz Gravitational Wave Sky with Pulsar Timing Arrays
arXiv:2409.07955 · doi:10.1142/S0218271825400139
Abstract
In the summer of 2023, the pulsar timing arrays (PTAs) announced a compelling evidence for the existence of a nanohertz stochastic gravitational wave background (SGWB). Despite this breakthrough, however, several critical questions remain unanswered: What is the source of the signal? How can cosmic variance be accounted for? To what extent can we constrain nanohertz gravity? When will individual supermassive black hole binaries become observable? And how can we achieve a stronger detection? These open questions have spurred significant interests in PTA science, making this an opportune moment to revisit the astronomical and theoretical foundations of the field, as well as the data analysis techniques employed. In this review, we focus on the theoretical aspects of the SGWB as detected by PTAs. We provide a comprehensive derivation of the expected signal and its correlation, presented in a pedagogical manner, while also addressing current constraints. Looking ahead, we explore future milestones in the field, with detailed discussions on emerging theoretical considerations such as cosmic variance, the cumulants of the one- and two-point functions, subluminal gravitational waves, and the anisotropy and polarization of the SGWB.
31 pages + refs, 7 figures, invited chapter for `One Hundred and Ten Years of General Relativity -- From Genesis and Empirical Foundations to Gravitational Waves, Cosmology and Quantum Gravity', v2: corrected typos, updated references
References in corpus (90)
- Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array
- Beyond the Cosmological Standard Model
- TEMPO2, a new pulsar timing package. I: Overview
- Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I
- The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals
- Tempo2, a new pulsar timing package. II: The timing model and precision estimates
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- Gravitational wave stochastic background from cosmic (super)strings
- Cosmic String Interpretation of NANOGrav Pulsar Timing Data
- Implications of the NANOGrav results for inflation
- Inflationary interpretation of the stochastic gravitational wave background signal detected by pulsar timing array experiments
- Primordial gravitational waves from NANOGrav: a broken power-law approach
- Early Planet Formation in Embedded Disks (eDisk). I. Overview of the Program and First Results
- Mapping gravitational-wave backgrounds using methods from CMB analysis: Application to pulsar timing arrays
- Searching For Gravitational Waves From Cosmological Phase Transitions With The NANOGrav 12.5-year dataset
- New advances in the Gaussian-process approach to pulsar-timing data analysis
- Cosmological Background Interpretation of Pulsar Timing Array Data
- Stochastic gravitational-wave background from metastable cosmic strings
- TEMPO2, a new pulsar timing package. III: Gravitational wave simulation
- Implications for the non-Gaussianity of curvature perturbation from pulsar timing arrays
- Science with the TianQin Observatory: Preliminary Results on Stochastic Gravitational-Wave Background
- Constraining cosmological phase transitions with the Parkes Pulsar Timing Array
- Constraints on ultralight scalar dark matter from pulsar timing
- Variance of the Hellings-Downs Correlation
- Implications for the Supermassive Black Hole Binaries from the NANOGrav 15-year Data Set
- Implications of Pulsar Timing Array Data for Scalar-Induced Gravitational Waves and Primordial Black Holes: Primordial Non-Gaussianity Considered
- No-go Theorem for Scalar-Trispectrum-Induced Gravitational Waves
- Pulsars and Gravity
- Ultra-low frequency gravitational waves from cosmological and astrophysical processes
- Estimating the sensitivity of pulsar timing arrays
- Early Planet Formation in Embedded Disks (eDisk). II. Limited Dust Settling and Prominent Snow Surfaces in the Edge-on Class I Disk IRAS 04302+2247
- Cosmological Interpretation for the Stochastic Signal in Pulsar Timing Arrays
- Forecasting pulsar timing array sensitivity to anisotropy in the stochastic gravitational wave background
- Constraining the Polarization of Gravitational Waves with the Parkes Pulsar Timing Array Second Data Release
- Search for Stochastic Gravitational-Wave Background from Massive Gravity in the NANOGrav 12.5-Year Data Set
- Pulsar and cosmic variances of pulsar timing-array correlation measurements of the stochastic gravitational wave background
- Observing the dynamics of super-massive black hole binaries with Pulsar Timing Arrays
- Simultaneously probing the sound speed and equation of state of the early Universe with pulsar timing arrays
- Broken blue-tilted inflationary gravitational waves: a joint analysis of NANOGrav 15-year and BICEP/Keck 2018 data
- Searching for Isotropic Stochastic Gravitational-Wave Background in the International Pulsar Timing Array Second Data Release
- Constraints On Scalar-Induced Gravitational Waves Up To Third Order From Joint Analysis of BBN, CMB, And PTA Data
- Chirality of the gravitational-wave background and pulsar-timing arrays
- Early Planet Formation in Embedded Disks (eDisk). IV. The Ringed and Warped Structure of the Disk around the Class I Protostar L1489 IRS
- Stochastic gravitational wave background phenomenology in a pulsar timing array
- Probing the speed of scalar-induced gravitational waves with pulsar timing arrays
- Analytical results for binary dynamics at the first post-Newtonian order in Einstein-Cartan theory with the Weyssenhoff fluid
- Radiative losses and radiation-reaction effects at the first post-Newtonian order in Einstein-Cartan theory
- Detecting the Stochastic Gravitational Wave Background from Massive Gravity with Pulsar Timing Arrays
- Pulsar timing array observations as possible hints for nonsingular cosmology
- Constraining gravitational wave propagation using pulsar timing array correlations
- Harmonic space analysis of pulsar timing array redshift maps
- Answers to frequently asked questions about the pulsar timing array Hellings and Downs curve
- NANOGrav hints for first-order confinement-deconfinement phase transition in different QCD-matter scenarios
- Pulsar-timing measurement of the circular polarization of the stochastic gravitational-wave background
- New observables for testing Bell inequalities in boson pair production
- Stochastic gravitational wave background constraints from Gaia DR3 astrometry
- Hunting the stochastic gravitational wave background in pulsar timing array cross correlations through theoretical uncertainty
- A Test of Gravity with Pulsar Timing Arrays
- Search for Non-Tensorial Gravitational-Wave Backgrounds in the NANOGrav 15-Year Data Set
- Multi-messenger Approaches to Supermassive Black Hole Binary Detection and Parameter Estimation: Implications for Nanohertz Gravitational Wave Searches with Pulsar Timing Arrays
- Null energy condition violation during inflation and pulsar timing array observations
- Nanohertz gravitational waves from NEC violation in the early universe
- Constraining alternative polarization states of gravitational waves from individual black hole binaries using pulsar timing arrays
- Dissecting the Stochastic Gravitational Wave Background with Astrometry
- Constraining the Graviton Mass with the NANOGrav 15-Year Data Set
- Nanohertz Gravitational Wave Astronomy during the SKA Era: An InPTA perspective
- Detecting the stochastic gravitational wave background with the TianQin detector
- Probing a stationary non-Gaussian background of stochastic gravitational waves with pulsar timing arrays
- Ephemeris Errors and the Gravitational Wave Signal: Harmonic Mode Coupling in Pulsar Timing Array Searches
- Testing gravity with cosmic variance-limited pulsar timing array correlations
- Status Report on Global Pulsar-Timing-Array Efforts to Detect Gravitational Waves
- Searching For Stochastic Gravitational Waves Below a Nanohertz
- The NANOGrav 12.5-year data set: A computationally efficient eccentric binary search pipeline and constraints on an eccentric supermassive binary candidate in 3C 66B
- Looking out for the Galileon in the nanohertz gravitational wave sky
- Timing-residual power spectrum of a polarized stochastic gravitational-wave background in pulsar-timing-array observation
- Pulsar timing array source ensembles
- Supermassive Black Hole Binary Environments: Effects on the Scaling Laws and Time to Detection for the Stochastic Background
- Redshift-space fluctuations in stochastic gravitational wave background
- Using Pulsar Parameter Drifts to Detect Sub-Nanohertz Gravitational Waves
- Correlations for an anisotropic polarized stochastic gravitational wave background in pulsar timing arrays
- Harmonic analysis for pulsar timing arrays
- Unveiling the Graviton Mass Bounds through Analysis of 2023 Pulsar Timing Array Data Releases
- Probing Parity Violation in the Stochastic Gravitational Wave Background with Astrometry
- Gravitational wave non-linearities and pulsar-timing array angular correlations
- Post-Newtonian-accurate pulsar timing array signals induced by inspiralling eccentric binaries: accuracy, computational cost, and single-pulsar search
- Constraining models of Inflationary Magnetogenesis with NANOGrav
- Systematic errors in searches for nanohertz gravitational waves
- Matter density distribution of general relativistic highly magnetized jets driven by black holes
- Pulsar Timing Arrays
- Non-linear corrections of overlap reduction functions for pulsar timing arrays
Cited by in corpus (8)
- Constraining string cosmology with the gravitational-wave background using the NANOGrav 15-year data set
- Toward a test of Gaussianity of a gravitational wave background
- Measuring anisotropies in the PTA band with cross-correlations
- Connecting Inflation to the NANOGrav 15-year Data Set via Massive Gravity
- Accurate pulsar timing array residual variances and correlation of the stochastic gravitational wave background
- Implications of pulsar timing arrays for Gauss-Bonnet Inflation
- Identifying the Quadrupolar Nature of Gravitational Wave Background through Space-based Missions
- Spatial Correlation between Pulsars from Interfering Gravitational-Wave Sources in Massive Gravity