Precision orbital dynamics from interstellar scintillation arcs for PSR J0437-4715
arXiv:2009.12757 · doi:10.3847/1538-4357/abbd40
Abstract
Intensity scintillations of radio pulsars are known to originate from interference between waves scattered by the electron density irregularities of interstellar plasma, often leading to parabolic arcs in the two-dimensional power spectrum of the recorded dynamic spectrum. The degree of arc curvature depends on the distance to the scattering plasma and its transverse velocity with respect to the line-of-sight. We report the observation of annual and orbital variations in the curvature of scintillation arcs over a period of 16 years for the bright millisecond pulsar, PSR J0437-4715. These variations are the signature of the relative transverse motions of the Earth, pulsar, and scattering medium, which we model to obtain precise measurements of parameters of the pulsar's binary orbit and the scattering medium itself. We observe two clear scintillation arcs in most of our 5000 observations and we show that they originate from scattering by thin screens located at distances pc and pc from Earth. The best-fit scattering model we derive for the brightest arc yields the pulsar's orbital inclination angle , and longitude of ascending node, . Using scintillation arcs for precise astrometry and orbital dynamics can be superior to modelling variations in the diffractive scintillation timescale, because the arc curvature is independent of variations in the level of turbulence of interstellar plasma. This technique can be used in combination with pulsar timing to determine the full three-dimensional orbital geometries of binary pulsars, and provides parameters essential for testing theories of gravity and constraining neutron star masses.
19 pages, 10 figures. Accepted for publication in ApJ
References in corpus (35)
- emcee: The MCMC Hammer
- The Astropy Project: Building an inclusive, open-science project and status of the v2.0 core package
- The ATNF Pulsar Catalogue
- The ATNF Pulsar Catalogue
- Tests of general relativity from timing the double pulsar
- PSRCHIVE and PSRFITS An Open Approach to Radio Pulsar Data Storage and Analysis
- The Parkes Pulsar Timing Array Project
- An ultra-wide bandwidth (704 to 4032 MHz) receiver for the Parkes radio telescope
- Measurement and correction of variations in interstellar dispersion in high-precision pulsar timing
- Faint Scattering Around Pulsars: Probing the Interstellar Medium on Solar System Size Scales
- A test of general relativity from the three-dimensional orbital geometry of a binary pulsar
- The MeerKAT Telescope as a Pulsar Facility: System verification and early science results from MeerTime
- Pulsar timing analysis in the presence of correlated noise
- 100 Microarcsecond Resolution VLBI Imaging of Anisotropic Interstellar Scattering towards Pulsar B0834+06
- Interpretation of parabolic arcs in pulsar secondary spectra
- Theory of Parabolic Arcs in Interstellar Scintillation Spectra
- The Parkes Pulsar Timing Array Project: Second data release
- Tests of Gravitational Symmetries with Pulsar Binary J1713+0747
- Pulsar Observations of Extreme Scattering Events
- Pulsar scintillations from corrugated reconnection sheets in the ISM
- Real-time detection of an extreme scattering event: constraints on Galactic plasma lenses
- The Origin of Radio Scintillation In the Local Interstellar Medium
- Scattering of pulsar radio emission by the interstellar plasma
- Modelling annual and orbital variations in the scintillation of the relativistic binary PSR J11416545
- Scintillation arcs in low-frequency observations of the timing-array millisecond pulsar J0437-4715
- Interstellar Scintillation of the Double Pulsar J07373039
- Green Bank Telescope Measurement of the Systemic Velocity of the Double Pulsar Binary J0737-3039 and Implications for its Formation
- Extreme Scattering Events Towards Two Young Pulsars
- Extreme radio-wave scattering associated with hot stars
- Measuring Interstellar Delays of PSR J0613-0200 over 7 years, using the Large European Array for Pulsars
- The Scintillation Velocity of the Relativistic Binary Pulsar PSR J1141-6545
- MeerTime - the MeerKAT Key Science Program on Pulsar Timing
- Observations of Low-Frequency Radio Emission from Millisecond Pulsars and Multipath Propagation in the Interstellar Medium
- Broadband Meter-Wavelength Observations of Ionospheric Scintillation
- Plasma Turbulence in the Local Bubble
Cited by in corpus (45)
- The Parkes pulsar timing array second data release: Timing analysis
- The neutron star mass, distance, and inclination from precision timing of the brilliant millisecond pulsar J04374715
- A Scintillation Arc Survey of 22 Pulsars with Low to Moderate Dispersion Measures
- Modelling annual scintillation arc variations in PSR J1643-1224 using the Large European Array for Pulsars
- Double-lens Scintillometry: The variable scintillation of pulsar B1508+55
- Scintillation timescale measurement of the highly active FRB20201124A
- Probing the local interstellar medium with scintillometry of the bright pulsar B1133+16
- Pulsar scintillation studies with LOFAR. I. The census
- The Thousand-Pulsar-Array programme on MeerKAT -- X. Scintillation arcs of 107 pulsars
- The NANOGrav 12.5-Year Data Set: Monitoring Interstellar Scattering Delays
- Discovery and modelling of broad-scale plasma lensing in black-widow pulsar J20510827
- Long-term scintillation studies of EPTA pulsars. I. Observations and basic results
- ASKAP observations of multiple rapid scintillators reveal a degrees-long plasma filament
- Status Report on Global Pulsar-Timing-Array Efforts to Detect Gravitational Waves
- Variable Scintillation Arcs of Millisecond Pulsars observed with the Large European Array for Pulsars
- Pulsar Double-lensing Sheds Light on the Origin of Extreme Scattering Events
- Scintillation Arc from FRB 20220912A
- Flux density monitoring of 89 millisecond pulsars with MeerKAT
- Pulsar Timing Array Experiments
- Interstellar scintillation and polarization of PSR B0656+14 in the Monogem Ring
- PSR~J19105959A: A rare gravitational laboratory for testing white dwarf models
- Orbital dynamics and extreme scattering event properties from long-term scintillation observations of PSR J1603-7202
- A supernova remnant association for the fast-moving pulsar PSR J0908-4913
- Determining electron column density fluctuations in a dominant scattering region using pulsar scintillation
- Analysis of the ionized interstellar medium and orbital dynamics of PSR~J1909-3744 using scintillation arcs
- Modelling Annual Scintillation Velocity Variations of FRB 20201124A
- High Resolution VLBI Astrometry of pulsar scintillation screens with the Transform
- Galactic Interstellar Scintillation Observed from Four Globular Cluster Pulsars by FAST
- A Cyclic Spectroscopy Scintillation Study of PSR B1937+21 I. Demonstration of Improved Scintillometry
- Simulating FRB Morphologies and Coherent Phase Correlation Signatures from Multi-Plane Astrophysical Lensing
- The Galactic distribution of pulsar scattering and the relation
- Scattering model of scintillation arcs in pulsar secondary spectra
- Associations Between Scattering Screens and Interstellar Medium Filaments
- A Simultaneous Dual-Frequency Scintillation Arc Survey of Six Bright Canonical Pulsars Using the Upgraded Giant Metrewave Radio Telescope
- Probing magneto-ionic microstructure towards the Vela pulsar using a prototype SKA-Low station
- The Pulsar Science Collaboratory: Multi-Epoch Scintillation Studies of Pulsars
- Scintillation Bandwidth Measurements from 23 Pulsars from the AO327 Survey
- Pulsar Cyclic Spectroscopy in the Partial-Deconvolution Regime: Benefits & Limitations
- Revisiting wideband pulsar timing measurements
- Investigating Extreme Scattering Events by Volumetric Ray-tracing
- Explanation of the exceptionally strong timing noise of PSR J0337+1715 by a circum-ternary planet and consequences for gravity tests
- Imaging without visibilities: FAST-Effelsberg scintillometry of PSR B1508+55
- Pulsar scintillation studies with LOFAR III. Annual variations in PSR~J08147429
- High Sensitivity Methodologies to Detect Radio Band Gravitational Waves
- Interstellar Interferometry: Precise Curvature Measurement from Pulsar Secondary Spectra