Gravitational wave detection using pulsars: status of the Parkes Pulsar Timing Array project
arXiv:0812.2721 · doi:10.1071/AS08023
Abstract
The first direct detection of gravitational waves may be made through observations of pulsars. The principal aim of pulsar timing array projects being carried out worldwide is to detect ultra-low frequency gravitational waves (f ~ 10^-9 to 10^-8 Hz). Such waves are expected to be caused by coalescing supermassive binary black holes in the cores of merged galaxies. It is also possible that a detectable signal could have been produced in the inflationary era or by cosmic strings. In this paper we review the current status of the Parkes Pulsar Timing Array project (the only such project in the Southern hemisphere) and compare the pulsar timing technique with other forms of gravitational-wave detection such as ground- and space-based interferometer systems.
Accepted for publication in PASA
References in corpus (7)
- TEMPO2, a new pulsar timing package. I: Overview
- PSRCHIVE and PSRFITS An Open Approach to Radio Pulsar Data Storage and Analysis
- Tempo2, a new pulsar timing package. II: The timing model and precision estimates
- Upper bounds on the low-frequency stochastic gravitational wave background from pulsar timing observations: current limits and future prospects
- Dispersion Measure Variations and their Effect on Precision Pulsar Timing
- Detection Rate Estimates of Gravity-waves Emitted During Parabolic Encounters of Stellar Black Holes in Globular Clusters
- An improved solar wind electron-density model for pulsar timing
Cited by in corpus (40)
- TianQin: a space-borne gravitational wave detector
- The international pulsar timing array project: using pulsars as a gravitational wave detector
- The Parkes Pulsar Timing Array Project
- The High Time Resolution Universe Pulsar Survey I: System configuration and initial discoveries
- Concepts and status of Chinese space gravitational wave detection projects
- An analysis of the timing irregularities for 366 pulsars
- Placing limits on the stochastic gravitational-wave background using European Pulsar Timing Array data
- Assessing the Role of Spin Noise in the Precision Timing of Millisecond Pulsars
- Gravitational Wave Detection by Interferometry (Ground and Space)
- Timing stability of millisecond pulsars and prospects for gravitational-wave detection
- Cosmic Strings and Superstrings
- Linking Tests of Gravity On All Scales: from the Strong-Field Regime to Cosmology
- A 12 minute Orbital Period Detached White Dwarf Eclipsing Binary
- Binary Black-Hole Mergers in Magnetized Disks: Simulations in Full General Relativity
- The Qitai Radio Telescope
- Polarization observations of 20 millisecond pulsars
- Detecting massive gravitons using pulsar timing arrays
- The Parkes Observatory Pulsar Data Archive
- The High Time Resolution Universe Survey VI: An Artificial Neural Network and Timing of 75 Pulsars
- Search for Memory and Inspiral Gravitational Waves from Super-Massive Binary Black Holes with Pulsar Timing Arrays
- Prospects for High-Precision Pulsar Timing
- Prospects for Detecting Dark Matter Halo Substructure with Pulsar Timing
- The of gravitational wave background experiments
- The High Time Resolution Universe Pulsar Survey IV: Discovery and polarimetry of millisecond pulsars
- The High Time Resolution Universe Survey II: Discovery of 5 Millisecond Pulsars
- Pulsars as gravitational wave detectors
- Mapping Incoherent Gravitational Wave Backgrounds
- The optimal schedule for pulsar timing array observations
- Sensitivity functions for space-borne gravitational wave detectors
- Observational constraints on light cosmic strings from photometry and pulsar timing
- Status Update of the Parkes Pulsar Timing Array
- Optimizing Pulsar Timing Arrays to Maximize Gravitational Wave Single Source Detection: a First Cut
- The PULSE@Parkes project: A new observing technique for long-term pulsar monitoring
- Pulsar Candidates Classification with Deep Convolutional Neural Networks
- Determining gravitational wave radiation from close galaxy pairs using a binary population synthesis approach
- Shortcut in codimension-2 brane cosmology in light of GW170817
- An overview of the Laser Interferometer Space Antenna
- Gravitational-wave astronomy: Observational results and their impact
- The High Time Resolution Universe surveys for pulsars and fast transients
- Stability of pulsar rotational and orbital periods