An improved test of the strong equivalence principle with the pulsar in a triple star system
arXiv:2005.01388 · doi:10.1051/0004-6361/202038104
Abstract
The gravitational strong equivalence principle (SEP) is a cornerstone of the general theory of relativity (GR). The extreme difference in binding energy between neutron stars and white dwarfs allows for precision tests of the SEP via the technique of pulsar timing. To date, the best limit on the validity of SEP under strong-field conditions was obtained with a unique pulsar in a triple stellar system, PSR J0337+1715. We report here on an improvement of this test using an independent data set acquired over 6 years with the Nan\c cay radio telescope (NRT). The improvements arise from a uniformly sampled data set, a theoretical analysis, and a treatment that fixes some short-comings in the previously published results, leading to better precision and reliability of the test. In contrast to the previously published test, we use a different long-term timing data set, developed a new timing model and an independent numerical integration of the motion of the system, and determined the masses and orbital parameters with a different methodology that treats the parameter , describing a possible strong-field SEP violation, identically to all other parameters. We obtain a violation parameter at 95\% confidence level, which is compatible with and improves upon the previous study by 30\%. This result is statistics-limited and avoids limitation by systematics as previously encountered. We find evidence for red noise in the pulsar spin frequency, which is responsible for up to 10\% of the reported uncertainty. We use the improved limit on SEP violation to place constraints on a class of well-studied scalar-tensor theories, in particular we find for the Brans-Dicke parameter. The conservative limits presented here fully take into account current uncertainties in the equation for state of neutron-star matter.
Accepted in A&A
References in corpus (17)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- The Confrontation between General Relativity and Experiment
- A Massive Pulsar in a Compact Relativistic Binary
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- TEMPO2, a new pulsar timing package. I: Overview
- A New Electron Density Model for Estimation of Pulsar and FRB Distances
- The mass distribution and gravitational potential of the Milky Way
- 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
- Switched magnetospheric regulation of pulsar spin-down
- The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most stringent test of scalar-tensor gravity
- Assessing the Role of Spin Noise in the Precision Timing of Millisecond Pulsars
- Gravitational-radiation losses from the pulsar-white-dwarf binary PSR J1141-6545
- The Green Bank Telescope 350 MHz Drift-scan Survey II: Data Analysis and the Timing of 10 New Pulsars, Including a Relativistic Binary
- New tests of local Lorentz invariance of gravity with small-eccentricity binary pulsars
- A pulsar-based timescale from the International Pulsar Timing Array
- Space test of the Equivalence Principle: first results of the MICROSCOPE mission
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- The Relativistic Binary Programme on MeerKAT: Science objectives and first results
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- Testing Gravity on Cosmic Scales: A Case Study of Jordan-Brans-Dicke Theory
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- New binary pulsar constraints on Einstein-æther theory after GW170817
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- The Formalism in the Geometric Trinity of Gravity
- Pulsar Candidate Identification Using Semi-Supervised Generative Adversarial Networks
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- Measuring the Lense-Thirring Orbital Precession and the Neutron Star Moment of Inertia with Pulsars
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- The Green Bank North Celestial Cap Survey IX: Timing Follow-up for 128 Pulsars
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- Radio Pulsars as a Laboratory for Strong-field Gravity Tests
- Measuring a gravitomagentic effect with the triple pulsar PSR J0337+1715
- Relativistic scattering of a fast spinning neutron star by a massive black hole
- Energy-momentum squared symmetric Teleparallel gravity: gravity
- Collinear and triangular solutions to the coplanar and circular three-body problem in the parametrized post-Newtonian formalism
- Bayesian pulsar timing and noise analysis with Vela.jl: an overview
- Improving pulsar-timing solutions through dynamic pulse fitting
- The SPAN512 mid-latitude pulsar survey at the Nançay Radio Telescope
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- Signatures of modified gravity from the gravitational Aharonov-Bohm effect
- Tests of Classical Gravity with Radio Pulsars
- Variability, polarimetry, and timing properties of single pulses from PSR J2222-0137 using FAST
- Testing modified gravity with the eccentric neutron star--black hole merger GW200105
- Triangular solution to the planar elliptic three-body problem in the parametrized post-Newtonian formalism
- Numerical evaluation of the exact post-Newtonian parameters in Brans-Dicke and entangled relativity theories
- Explanation of the exceptionally strong timing noise of PSR J0337+1715 by a circum-ternary planet and consequences for gravity tests
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