Timing Measurements of the Relativistic Binary Pulsar PSR B1913+16
arXiv:1011.0718 · doi:10.1088/0004-637X/722/2/1030
Abstract
We present results of more than three decades of timing measurements of the first known binary pulsar, PSR B1913+16. Like most other pulsars, its rotational behavior over such long time scales is significantly affected by small-scale irregularities not explicitly accounted for in a deterministic model. Nevertheless, the physically important astrometric, spin, and orbital parameters are well determined and well decoupled from the timing noise. We have determined a significant result for proper motion, , mas yr. The pulsar exhibited a small timing glitch in May 2003, with , and a smaller timing peculiarity in mid-1992. A relativistic solution for orbital parameters yields improved mass estimates for the pulsar and its companion, $m_1=1.4398\pm0.0002 \ M_{\sun}$ and $m_2=1.3886\pm0.0002 \ M_{\sun}$. The system's orbital period has been decreasing at a rate times that predicted as a result of gravitational radiation damping in general relativity. As we have shown before, this result provides conclusive evidence for the existence of gravitational radiation as predicted by Einstein's theory.
Published in APJ, 722, 1030 (2010)
References in corpus (9)
- TEMPO2, a new pulsar timing package. I: Overview
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- Tempo2, a new pulsar timing package. II: The timing model and precision estimates
- Avalanche dynamics of radio pulsar glitches
- Multi-telescope timing of PSR J1518+4904
- The Formation of the Double Pulsar PSR J0737-3039A/B
- A strong correlation in radio pulsars with implications for torque variations
- Arecibo HI Absorption Measurements of Pulsars and the Electron Density at Intermediate Longitudes in the First Galactic Quadrant
- Kinetics of Electrodeposition of Silver and Copper at Template Synthesis of Nanowires
Cited by in corpus (27)
- The Confrontation between General Relativity and Experiment
- A Massive Pulsar in a Compact Relativistic Binary
- The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most stringent test of scalar-tensor gravity
- Multi-messenger picture of compact binary mergers
- Eclipse Timing Variation Analyses of Eccentric Binaries with Close Tertiaries in the Kepler field
- The relativistic pulsar-white dwarf binary PSR J1738+0333 I. Mass determination and evolutionary history
- Numerical relativity simulations of neutron star merger remnants using conservative mesh refinement
- The Binary Companion of Young, Relativistic Pulsar J1906+0746
- The formation of low-mass helium white dwarfs orbiting pulsars: Evolution of low-mass X-ray binaries below the bifurcation period
- Tests of local Lorentz invariance violation of gravity in the standard model extension with pulsars
- Scientific Potential of DECIGO Pathfinder and Testing GR with Space-Borne Gravitational Wave Interferometers
- PSR J1930-1852: a pulsar in the widest known orbit around another neutron star
- Tidal invariants for compact binaries on quasi-circular orbits
- Pulsars and Gravity
- Astrophysical constraints on extended gravity models
- Constraining the gravitational wave energy density of the Universe using Earth's ring
- The observed neutron star mass distribution as a probe of the supernova explosion mechanism
- 1974: the discovery of the first binary pulsar
- Post-Newtonian Celestial Dynamics in Cosmology: Field Equations
- Fast Spinning Pulsars as Probes of Massive Black Holes' Gravity
- Testing Lorentz violation with binary pulsars: constraints on standard model extension
- Dynamic Field Theory and Equations of Motion in Cosmology
- Stochastic Gravitational Wave Background from Exoplanets
- Strong lensing interferometry for compact binaries
- The Emission of Electromagnetic Radiation from Charges Accelerated by Gravitational Waves and its Astrophysical Implications
- Towards the Laboratory Search for Space-Time Dissipation
- Statistics of the CMB polarised anisotropies