50 pico arcsecond astrometry of pulsar emission
arXiv:1301.7505 · doi:10.1093/mnrasl/slu010
Abstract
We use VLBI imaging of the interstellar scattering speckle pattern associated with the pulsar PSR 0834+06 to measure the astrometric motion of its emission. The ~ 5AU interstellar baselines, provided by interference between speckles spanning the scattering disk, enable us to detect motions with sub nanoarcsecond accuracy. We measure a small pulse deflection of ~18+/-2 km (not including geometric uncertainties), which is 100 times smaller than the native resolution of this interstellar interferometer. This implies that the emission region is small, and at an altitude of a few hundred km, with the exact value depending on field geometry. This is substantially closer to the star than to the light cylinder. Future VLBI measurements can improve on this finding. This new regime of ultra-precise astrometry may enable precision parallax distance determination of pulsar binary displacements.
5 pages, corrected type in arxiv abstract
References in corpus (3)
Cited by in corpus (32)
- Local Circumnuclear Magnetar Solution to Extragalactic Fast Radio Bursts
- Pulsar scintillations from corrugated reconnection sheets in the ISM
- Pulsar emission amplified and resolved by plasma lensing in an eclipsing binary
- The CHIME Pulsar Project: System Overview
- Predicting Pulsar Scintillation from Refractive Plasma Sheets
- Pulsar lensing geometry
- The Thousand-Pulsar-Array programme on MeerKAT -- V. Scattering analysis of single-component pulsars
- Visibility of pulsar emission: motion of the visible point
- Descattering of Giant Pulses in PSR B1957+20
- Pulsar scintillation studies with LOFAR. I. The census
- Unusually bright single pulses from B1744-24A binary: a case of strong lensing?
- Noodle Model for Scintillation Arcs
- Radio Pulsars
- The Thousand-Pulsar-Array programme on MeerKAT -- X. Scintillation arcs of 107 pulsars
- The - Diagram: Transforming pulsar scintillation spectra to coordinates on highly anisotropic interstellar scattering screens
- Resolving the Emission Regions of the Crab Pulsar's Giant Pulses II. Evidence for Relativistic Motion
- Resolving the emission regions of the Crab pulsar's giant pulses
- Neutron Star Physics in the Square Kilometer Array Era : An Indian Perspective
- Possible Astrophysical Observables of Quantum Gravity Effects near Black Holes
- The Frequency Dependence of Scintillation Arc Thickness in Pulsar B1133+16
- Disentangling interstellar plasma screens with pulsar VLBI: Combining auto- and cross-correlations
- Pulsar Double-lensing Sheds Light on the Origin of Extreme Scattering Events
- Scintillation based search for off-pulse radio emission from pulsars
- The Shapes of Pulsar Radio Pulses in the Plane of the Sky
- Technical constraints on interstellar interferometry and spatially resolving the pulsar magnetosphere
- Strong lensing interferometry for compact binaries
- Testing Gravity with Pulsar Scintillation Measurements
- Scintillation Properties of PSR B1133+16 Measured with Very Long Baseline Interferometry
- Resolving Microlensing Events with Triggered VLBI
- Lensing point-spread function of coherent astrophysical sources and non-trivial wave effects
- Morphology of solar system scale plasma lenses in the interstellar medium: a test from pulsar scintillation parabolic arcs
- Interstellar Interferometry: Precise Curvature Measurement from Pulsar Secondary Spectra