Gravitational Waves Probe the Coalescence Rate of Massive Black Hole Binaries
arXiv:astro-ph/0210148 · doi:10.1086/345443
Abstract
We calculate the expected nHz--Hz gravitational wave (GW) spectrum from coalescing Massive Black Hole (MBH) binaries resulting from mergers of their host galaxies. We consider detection of this spectrum by precision pulsar timing and a future Pulsar Timing Array. The spectrum depends on the merger rate of massive galaxies, the demographics of MBHs at low and high redshift, and the dynamics of MBH binaries. We apply recent theoretical and observational work on all of these fronts. The spectrum has a characteristic strain , just below the detection limit from recent analysis of precision pulsar timing measurements. However, the amplitude of the spectrum is still very uncertain owing to approximations in the theoretical formulation of the model, to our lack of knowledge of the merger rate and MBH population at high redshift, and to the dynamical problem of removing enough angular momentum from the MBH binary to reach a GW-dominated regime.
31 Pages, 8 Figures, small changes to match the published version
References in corpus (1)
Cited by in corpus (289)
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals
- Cosmological Backgrounds of Gravitational Waves
- The NANOGrav 15-year Data Set: Search for Signals from New Physics
- The NANOGrav 12.5-year Data Set: Search For An Isotropic Stochastic Gravitational-Wave Background
- Black holes, gravitational waves and fundamental physics: a roadmap
- Binary and Millisecond Pulsars
- The NANOGrav 11-year Data Set: High-precision timing of 45 Millisecond Pulsars
- The Cosmic Energy Inventory
- Gravitational radiation from cosmic (super)strings: bursts, stochastic background, and observational windows
- European Pulsar Timing Array Limits On An Isotropic Stochastic Gravitational-Wave Background
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- The Parkes Pulsar Timing Array Project
- Detection methods for stochastic gravitational-wave backgrounds: a unified treatment
- Testing General Relativity with Pulsar Timing
- The NANOGrav 15-year Data Set: Constraints on Supermassive Black Hole Binaries from the Gravitational Wave Background
- The basics of gravitational wave theory
- Low-Frequency Gravitational Waves from Massive Black Hole Binaries: Predictions for LISA and Pulsar Timing Arrays
- Limits on the Stochastic Gravitational Wave Background from the North American Nanohertz Observatory for Gravitational Waves
- Upper bounds on the low-frequency stochastic gravitational wave background from pulsar timing observations: current limits and future prospects
- The International Pulsar Timing Array second data release: Search for an isotropic Gravitational Wave Background
- The NANOGrav Nine-year Data Set: Limits on the Isotropic Stochastic Gravitational Wave Background
- Low-frequency gravitational radiation from coalescing massive black hole binaries in hierarchical cosmologies
- Stochastic Gravitational Wave Backgrounds
- Common-red-signal analysis with 24-yr high-precision timing of the European Pulsar Timing Array: Inferences in the stochastic gravitational-wave background search
- Gravitational waves from resolvable massive black hole binary systems and observations with Pulsar Timing Arrays
- Placing limits on the stochastic gravitational-wave background using European Pulsar Timing Array data
- Detecting the stochastic gravitational wave background using pulsar timing
- Has NANOGrav found first evidence for cosmic strings?
- Assessing the Role of Spin Noise in the Precision Timing of Millisecond Pulsars
- Optimal strategies for gravitational wave stochastic background searches in pulsar timing data
- European Pulsar Timing Array Limits on Continuous Gravitational Waves from Individual Supermassive Black Hole Binaries
- Massive Black Hole Binary Mergers in Dynamical Galactic Environments
- The stochastic background: scaling laws and time to detection for pulsar timing arrays
- Efficient Merger of Binary Supermassive Black Holes in Merging Galaxies
- Systematic investigation of the expected gravitational wave signal from supermassive black hole binaries in the pulsar timing band
- The NANOGrav Nine-year Data Set: Observations, Arrival Time Measurements, and Analysis of 37 Millisecond Pulsars
- Observational Constraints on Cosmic String Production During Brane Inflation
- Timing stability of millisecond pulsars and prospects for gravitational-wave detection
- Viscous Hydrodynamics Simulations of Circumbinary Accretion Discs: Variability, Quasi-Steady State, and Angular Momentum Transfer
- Inflationary interpretation of the stochastic gravitational wave background signal detected by pulsar timing array experiments
- LISA observations of rapidly spinning massive black hole binary systems
- Strong-Field Tests of Gravity Using Pulsars and Black Holes
- On measuring the gravitational-wave background using Pulsar Timing Arrays
- The imprint of massive black hole formation models on the LISA data stream
- TempoNest: A Bayesian approach to pulsar timing analysis
- The gravitational wave signal from massive black hole binaries and its contribution to the LISA data stream
- The Gravitational Wave Background from Massive Black Hole Binaries in Illustris: spectral features and time to detection with pulsar timing arrays
- Bounds on Cosmic Strings from WMAP and SDSS
- Gas driven massive black hole binaries: signatures in the nHz gravitational wave background
- Characterising gravitational wave stochastic background anisotropy with Pulsar Timing Arrays
- Detection of gravitational waves from the QCD phase transition with pulsar timing arrays
- Understanding and analysing time-correlated stochastic signals in pulsar timing
- Measuring the parameters of massive black hole binary systems with Pulsar Timing Array observations of gravitational waves
- Post-Newtonian Evolution of Massive Black Hole Triplets in Galactic Nuclei: IV. Implications for LISA
- Binary and Millisecond Pulsars
- Self consistent model for the evolution of eccentric massive black hole binaries in stellar environments: implications for gravitational wave observations
- Gravitational Waves and Dark Radiation from Dark Phase Transition: Connecting NANOGrav Pulsar Timing Data and Hubble Tension
- Gravitational Waves from Supermassive Black Hole Coalescence in a Hierarchical Galaxy Formation Model
- Detecting a Stochastic Gravitational Wave Background in the presence of a Galactic Foreground and Instrument Noise
- An all-sky search for continuous gravitational waves in the Parkes Pulsar Timing Array data set
- Mapping gravitational-wave backgrounds using methods from CMB analysis: Application to pulsar timing arrays
- NANOGrav Limits on Gravitational Waves from Individual Supermassive Black Hole Binaries in Circular Orbits
- LISA double black holes: Dynamics in gaseous nuclear discs
- Hyper-efficient model-independent Bayesian method for the analysis of pulsar timing data
- Searching For Anisotropic Gravitational-wave Backgrounds Using Pulsar Timing Arrays
- A Radio Census of Binary Supermassive Black Holes
- The Mass of a Millisecond Pulsar
- From Spin Noise to Systematics: Stochastic Processes in the First International Pulsar Timing Array Data Release
- New advances in the Gaussian-process approach to pulsar-timing data analysis
- Black hole mergers from dwarf to massive galaxies with the NewHorizon and Horizon-AGN simulations
- Astrophysics Milestones For Pulsar Timing Array Gravitational Wave Detection
- The Sensitivity of the Parkes Pulsar Timing Array to Individual Sources of Gravitational Waves
- Resolving multiple supermassive black hole binaries with pulsar timing arrays
- The European Pulsar Timing Array: current efforts and a LEAP toward the future
- Single Sources in the Low-Frequency Gravitational Wave Sky: properties and time to detection by pulsar timing arrays
- Electromagnetic Counterparts to Massive Black Hole Mergers
- The NANOGrav 12.5-year Data Set: Wideband Timing of 47 Millisecond Pulsars
- Insights on the astrophysics of supermassive black hole binaries from pulsar timing observations
- Massive black hole merger rates: the effect of kpc separation wandering and supernova feedback
- TEMPO2, a new pulsar timing package. III: Gravitational wave simulation
- The MeerKAT Pulsar Timing Array: First Data Release
- Time-domain Implementation of the Optimal Cross-Correlation Statistic for Stochastic Gravitational-Wave Background Searches in Pulsar Timing Data
- Does a 'stochastic' background of gravitational waves exist in the pulsar timing band?
- Prospects for gravitational-wave detection and supermassive black hole astrophysics with pulsar timing arrays
- Interactions between multiple supermassive black holes in galactic nuclei: a solution to the final parsec problem
- Correlated magnetic noise in global networks of gravitational-wave interferometers: observations and implications
- Are we there yet? Time to detection of nanohertz gravitational waves based on pulsar-timing array limits
- The MeerKAT Pulsar Timing Array: The first search for gravitational waves with the MeerKAT radio telescope
- From Bright Binaries To Bumpy Backgrounds: Mapping Realistic Gravitational Wave Skies With Pulsar-Timing Arrays
- Constraining astrophysical observables of Galaxy and Supermassive Black Hole Binary Mergers using Pulsar Timing Arrays
- Detecting massive gravitons using pulsar timing arrays
- Inflationary theory and pulsar timing investigations of primordial black holes and gravitational waves
- Gravitational waves and stalled satellites from massive galaxy mergers at z <= 1
- Constraints of relic gravitational waves by Pulsar Timing Array: Forecasts for the FAST and SKA projects
- Massive black hole binary systems and the NANOGrav 12.5 year results
- Post-Newtonian evolution of massive black hole triplets in galactic nuclei -- III. A robust lower limit to the nHz stochastic background of gravitational waves
- Post-Newtonian evolution of massive black hole triplets in galactic nuclei -- II. Survey of the parameter space
- High-fidelity radio astronomical polarimetry using a millisecond pulsar as a polarized reference source
- Testing the binary hypothesis: pulsar timing constraints on supermassive black hole binary candidates
- Detection, Localization and Characterization of Gravitational Wave Bursts in a Pulsar Timing Array
- On the gravitational wave sources from the NANOGrav 12.5-yr data
- Detection of eccentric supermassive black hole binaries with pulsar timing arrays: Signal-to-noise ratio calculations
- Constraining Sub-Parsec Binary Supermassive Black Holes in Quasars with Multi-Epoch Spectroscopy. III. Candidates from Continued Radial Velocity Tests
- Constraining the Solution to the Last Parsec Problem with Pulsar Timing
- Non-tensorial Gravitational Wave Background in NANOGrav 12.5-Year Data Set
- Pulsar science with the Five hundred metre Aperture Spherical Telescope
- Understanding black hole mass assembly via accretion and mergers at late times in cosmological simulations
- Massive black hole evolution models confronting the n-Hz amplitude of the stochastic gravitational wave background
- Post-Newtonian Evolution of Massive Black Hole Triplets in Galactic Nuclei: I. Numerical Implementation and Tests
- Searching for continuous Gravitational Waves in the second data release of the International Pulsar Timing Array
- Limits on anisotropy in the nanohertz stochastic gravitational-wave background
- The noise properties of 42 millisecond pulsars from the European Pulsar Timing Array and their impact on gravitational wave searches
- Search for Memory and Inspiral Gravitational Waves from Super-Massive Binary Black Holes with Pulsar Timing Arrays
- Towards Robust Gravitational Wave Detection with Pulsar Timing Arrays
- Noise-marginalized optimal statistic: A robust hybrid frequentist-Bayesian statistic for the stochastic gravitational-wave background in pulsar timing arrays
- Observing the inspiral of coalescing massive black hole binaries with LISA in the era of Multi-Messenger Astrophysics
- Pulsars and Gravity
- Varstrometry for Off-nucleus and Dual sub-Kpc AGN (VODKA): Methodology and Initial Results with Gaia DR2
- Detecting eccentric supermassive black hole binaries with pulsar timing arrays: Resolvable source strategies
- Mapping gravitational-wave backgrounds in modified theories of gravity using pulsar timing arrays
- Pulsar-timing arrays, astrometry, and gravitational waves
- Search for the Gravitational-wave Background from Cosmic Strings with the Parkes Pulsar Timing Array Second Data Release
- Massive black hole binaries in LISA: multimessenger prospects and electromagnetic counterparts
- The NANOGrav 12.5-year data set: Search for Non-Einsteinian Polarization Modes in theGravitational-Wave Background
- Gravitational waves and pulsar timing: stochastic background, individual sources and parameter estimation
- Gravitational Waves from Light Cosmic Strings: Backgrounds and Bursts with Large Loops
- Searching for stochastic gravitational waves using data from the two co-located LIGO Hanford detectors
- On detection of the stochastic gravitational-wave background using the Parkes pulsar timing array
- Estimating the sensitivity of pulsar timing arrays
- Cosmological Interpretation for the Stochastic Signal in Pulsar Timing Arrays
- Discovery of Five Recycled Pulsars in a High Galactic Latitude Survey
- Forecasting pulsar timing array sensitivity to anisotropy in the stochastic gravitational wave background
- Noise analysis in the European Pulsar Timing Array data release 2 and its implications on the gravitational-wave background search
- Search for Small-Mass Black Hole Dark Matter with Space-Based Gravitational Wave Detectors
- Searching for primordial black hole dark matter with pulsar timing arrays
- The Parallax and Proper Motion of PSR J0030+0451
- Pulsars as gravitational wave detectors
- The detectability of cosmological gravitational-wave backgrounds: a rule of thumb
- The NANOGrav 11-Year Data Set: Limits on Gravitational Wave Memory
- The optimal schedule for pulsar timing array observations
- Observing the dynamics of super-massive black hole binaries with Pulsar Timing Arrays
- Assessing Pulsar Timing Array Sensitivity to Gravitational Wave Bursts with Memory
- Constraints on Black Hole/Host Galaxy Co-evolution and Binary Stalling Using Pulsar Timing Arrays
- Common-spectrum process versus cross-correlation for gravitational-wave searches using pulsar timing arrays
- On the search of electromagnetic cosmological counterparts to coalescences of massive black hole binaries
- Single field inflation in the light of Pulsar Timing Array Data: Quintessential interpretation of blue tilted tensor spectrum through Non-Bunch Davies initial condition
- Pulse intensity modulation and the timing stability of millisecond pulsars: A case study of PSR J1713+0747
- Modelling and mitigating refractive propagation effects in precision pulsar timing observations
- Implications of Gravitational-wave Production from Dark Photon Resonance to Pulsar-timing Observations and Effective Number of Relativistic Species
- Detection and localization of continuous gravitational waves with pulsar timing arrays: the role of pulsar terms
- The MeerKAT Pulsar Timing Array: The -year data release and the noise and stochastic signals of the millisecond pulsar population
- Accelerated Bayesian model-selection and parameter-estimation in continuous gravitational-wave searches with pulsar-timing arrays
- Searching for Isotropic Stochastic Gravitational-Wave Background in the International Pulsar Timing Array Second Data Release
- The effect of small inter-pulsar distance variations in stochastic gravitational wave background searches with Pulsar Timing Arrays
- Fisher formalism for anisotropic gravitational-wave background searches with pulsar timing arrays
- Chirality of the gravitational-wave background and pulsar-timing arrays
- The search for anisotropy in the gravitational-wave background with pulsar-timing arrays
- The NANOGrav Program for Gravitational Waves and Fundamental Physics
- Constraining the coalescence rate of supermassive black-hole binaries using pulsar timing
- Multi-messenger approaches to binary supermassive black holes in the "continuous-wave" regime
- Discovery of a Candidate Binary Supermassive Black Hole in a Periodic Quasar from Circumbinary Accretion Variability
- Gravitational Self-Lensing in Populations of Massive Black Hole Binaries
- An Efficient Approximation to the Likelihood for Gravitational Wave Stochastic Background Detection Using Pulsar Timing Data
- Measuring the non-Gaussian stochastic gravitational-wave background: a method for realistic interferometer data
- Constraints on Individual Supermassive Black Hole Binaries from Pulsar Timing Array Limits on Continuous Gravitational Waves
- Gravitational Wave Background of Neutron Star-White Dwarf Binaries
- Observational constraints on cosmic strings: Bayesian analysis in a three dimensional parameter space
- Very High Angular Resolution Science with the Square Kilometre Array
- Intensity and anisotropies of the stochastic Gravitational Wave background from merging compact binaries in galaxies
- Limits on the speed of gravitational waves from pulsar timing
- Model Dependence of Bayesian Gravitational-Wave Background Statistics for Pulsar Timing Arrays
- Massive Black Hole Mergers with Orbital Information: Predictions from the ASTRID Simulation
- LISA detection of massive black hole binaries: imprint of seed populations and of exterme recoils
- The Nanohertz Gravitational Wave Astronomer
- Eight Millisecond Pulsars Discovered in the Arecibo PALFA Survey
- The Detectability of Departures from the Inflationary Consistency Equation
- On the Amplitude and Stokes Parameters of a Stochastic Gravitational-Wave Background
- Improving timing sensitivity in the microhertz frequency regime: limits from PSR J17130747 on gravitational waves produced by super-massive black-hole binaries
- Optimizing Pulsar Timing Arrays to Maximize Gravitational Wave Single Source Detection: a First Cut
- Extreme recoils: impact on the detection of gravitational waves from massive black hole binaries
- Have Pulsar Timing Arrays detected the Hot Big Bang? Gravitational Waves from Strong First Order Phase Transitions in the Early Universe
- Pulsar-timing measurement of the circular polarization of the stochastic gravitational-wave background
- Strong Gravitational Lensing and Localization of Merging Massive Black Hole Binaries with LISA
- Enhanced exploration for primordial black holes using pulsar timing arrays
- Shapiro delay in the PSR J1640+2224 binary system
- The minimum and maximum gravitational-wave background from supermassive binary black holes
- Mergers of luminous early-type galaxies in the local universe and gravitational wave background
- Enhancement of gravitational waves at Q-ball decay including non-linear density perturbations
- Pulsars and Gravitational Wave Detection
- The Nature of Active Galactic Nuclei with Velocity Offset Emission Lines
- The Green Bank North Celestial Cap Survey. VII. 12 New Pulsar Timing Solutions
- Constraining alternative polarization states of gravitational waves from individual black hole binaries using pulsar timing arrays
- Statistical properties of astrophysical gravitational-wave backgrounds
- Gravitational wave detection using high precision pulsar observations
- Primordial magnetic field as a common solution of nanohertz gravitational waves and the Hubble tension
- Bayesian estimation of non-Gaussianity in pulsar timing analysis
- Cosmic variance in the nanohertz gravitational wave background
- Gravitational Wave Hotspots: Ranking Potential Locations of Single-Source Gravitational Wave Emission
- The quest for the largest depleted galaxy core: supermassive black hole binaries and stalled in-falling satellites
- Spectral Variance in a Stochastic Gravitational-Wave Background From a Binary Population
- Searching for High Frequency Gravitational Waves with Phonons
- Constraining a black hole companion for M87* through imaging by the Event Horizon Telescope
- Implications of cosmologically coupled black holes for pulsar timing arrays
- Detecting nanohertz gravitational waves with pulsar timing arrays
- Pulsar timing arrays and the challenge of massive black hole binary astrophysics
- On the Role of Gas Cooling in the Dynamics of Circumbinary Disks
- Minimum Requirements for Detecting a Stochastic Gravitational Wave Background Using Pulsars
- Accelerating pulsar timing data analysis
- Limits on the strength of individual gravitational wave sources using high-cadence observations of PSR B1937+21
- Status Report on Global Pulsar-Timing-Array Efforts to Detect Gravitational Waves
- Gravitational waves from supermassive black hole binaries in ultra-luminous infrared galaxies
- Exploring Proxies for the Supermassive Black Hole Mass Function: Implications for Pulsar Timing Arrays
- About gravitational-wave generation by a three-body system
- Disentangling Multiple Stochastic Gravitational Wave Background Sources in PTA Datasets
- The Gravitational-Wave Discovery Space of Pulsar Timing Arrays
- The NANOGrav 15 yr Data Set: Looking for Signs of Discreteness in the Gravitational-wave Background
- A search for radio pulsars around low-mass white dwarfs
- On using inspiralling supermassive binary black holes in the PTA frequency band as standard sirens to constrain dark energy
- The Feasibility of Using Black Widow Pulsars in Pulsar Timing Arrays for Gravitational Wave Detection
- Beyond the Hellings-Downs curve: Non-Einsteinian gravitational waves in pulsar timing array correlations
- Constraints on the abundance of supermassive primordial black holes from lensing of compact radio sources
- Supermassive Black Hole Binary Environments: Effects on the Scaling Laws and Time to Detection for the Stochastic Background
- Null stream analysis of Pulsar Timing Array data: localisation of resolvable gravitational wave sources
- Observing Gravitational Radiation with QSO Proper Motions and the SKA
- Millisecond and Binary Pulsars as Nature's Frequency Standards. III. Fourier Analysis and Spectral Sensitivity of Timing Observations to Low-Frequency Noise
- Using pulsar timing arrays and the quantum normalization condition to constrain relic gravitational waves
- Toward robust detections of nanohertz gravitational waves
- On The Dark Side of Quasar Evolution
- Radio pulsars: testing gravity and detecting gravitational waves
- Exploring the nature of black hole and gravity with an imminent merging binary of supermassive black holes
- Testing strengths, limitations and biases of current Pulsar Timing Arrays detection analyses on realistic data
- A search for radio pulsations from neutron star companions of four subdwarf B stars
- Pulsar Timing Sensitivity to Very-Low-Frequency Gravitational Waves
- Correlated timing noise and high precision pulsar timing: Measuring frequency second derivatives as an example
- Gravitational waves in neutrino plasma and NANOGrav signal
- Optimization of NANOGrav's Time Allocation for Maximum Sensitivity to Single Sources
- The Abundance of X-Shaped Radio Sources: Implications for the Gravitational Wave Background
- Extragalactic neutrino emission induced by Supermassive and Stellar Mass Black Hole mergers
- Resolving the nano-Hz gravitational wave sky: the detectability of eccentric binaries with PTA experiments
- Sub-GeV dark matter and nano-Hertz gravitational waves from a classically conformal dark sector
- Determining gravitational wave radiation from close galaxy pairs using a binary population synthesis approach
- A possible signature of cosmic neutrino decoupling in the nHz region of the spectrum of primordial gravitational waves
- Low-Frequency Gravitational Radiation from Coalescing Massive Black Holes
- Separating deterministic and stochastic gravitational wave signals in realistic pulsar timing array datasets
- Varstrometry Selected Radio-Loud Candidates of Dual and Off-Nucleus Quasars at Sub-kpc Scales
- Extending gravitational wave burst searches with pulsar timing arrays
- Cosmological Constraints on the Very Low Frequency Gravitational-Wave Background
- X-ray view of a merging supermassive black hole binary candidate SDSSJ1430+2303: Results from the first ~200 days of observations
- Binary black holes in Mkns as sources of gravitational radiation for space based interferometers
- Constraining the host galaxy halos of massive black holes from LISA event rates
- Co-evolution of supermassive black holes with galaxies from semi-analytic model: stochastic gravitational wave background and black hole clustering
- A search for pulsars in subdwarf B binary systems and discovery of giant-pulse emitting PSR J0533-4524
- Host Galaxy Demographics Of Individually Detectable Supermassive Black-hole Binaries with Pulsar Timing Arrays
- Investigating ultra-long gravitational waves with measurements of pulsars rotational parameters
- Gravitational wave background discovered by NANOGrav as evidence of a cyclic universe
- Reading signatures of supermassive binary black holes in pulsar timing array observations
- Realistic consecutive galaxy mergers form eccentric PTA sources
- Pulsar Timing Residuals Induced by Gravitational Waves from Single Non-evolving Supermassive Black Hole Binaries with Elliptical Orbits
- Solar System Ephemerides, Pulsar Timing, Gravitational Waves, and Navigation
- Pulsar Timing Arrays
- Measuring anisotropies in the PTA band with cross-correlations
- Regularizing the Pulsar Timing Array likelihood: A path towards Fourier Space
- Impact of the observation frequency coverage on the significance of a gravitational wave background detection in PTA data
- Probing massive black holes with gravitational waves
- Dissecting the nanohertz gravitational wave sky: Frequency-correlated anisotropy induced by eccentric supermassive black hole binaries
- Multimodality in the Search for New Physics in Pulsar Timing Data and the Case of Kination-amplified Gravitational-wave Background from Inflation
- The impact of a stochastic gravitational-wave background on pulsar timing parameters
- The sensitivity of pulsar timing arrays
- Searching for Anisotropy in the Gravitational Wave Background Using the Parkes Pulsar Timing Array
- Supercooled Dark Scalar Phase Transitions explanation of NANOGrav data
- The Potential of FAST in Detecting Celestial Hydroxyl Masers and Related Science Topics
- Probing the mass relation between supermassive black holes and dark matter halos at high redshifts by gravitational wave experiments
- A Search for Pulsar Companions Around Low-Mass White Dwarfs
- Anisotropy of Nanohertz Gravitational Wave Background and Source Clustering from Supermassive Binary Black Holes Based on Cosmological Simulation
- Resolving Individual Signals in the Presence of Stochastic Background in Future Pulsar Timing Arrays
- Reconstructing inflationary potential from NANOGrav 15-year Data: A robust study using Non-Bunch Davies initial condition
- Finite Populations & Finite Time: The Non-Gaussianity of a Gravitational Wave Background
- Probing supermassive black hole scalarization with Pulsar Timing Arrays
- An updated constraint for the Gravitational Wave Background from the Gamma-ray Pulsar Timing Array
- Statistical Analyses for NANOGrav 5-year Timing Residuals
- Cosmic Overture Echoed in a Stellar Final Act: Implications of Nanohertz Gravitational Waves for Core Collapse Supernova Neutrinos
- The gravitational wave signal from isolated objects
- Searching for gravitational waves emitted by binaries with spinning components
- Constraining gravitational wave velocities using gravitational and electromagnetic wave observations of white dwarf binaries
- Mergers of luminous early-type galaxies
- Pulsar timing residuals due to individual non-evolving gravitational wave sources
- Probing fundamental physics with pulsars
- Stochastic gravitational wave background from the collisions of dark matter halos