Pulsar Double-lensing Sheds Light on the Origin of Extreme Scattering Events
arXiv:2208.06884 · doi:10.3847/1538-4357/accde0
Abstract
In extreme scattering events, the brightness of a compact radio source drops significantly, as light is refracted out of the line of sight by foreground plasma lenses. Despite recent efforts, the nature of these lenses has remained a puzzle, because any roughly round lens would be so highly overpressurized relative to the interstellar medium that it could only exist for about a year. This, combined with a lack of constraints on distances and velocities, has led to a plethora of theoretical models. We present observations of a dramatic double-lensing event in pulsar PSR~B0834+06 and use a novel phase-retrieval technique to show that the data can be reproduced remarkably well with a two-screen model: one screen with many small lenses and another with a single, strong one. We further show that the latter lens is so strong that it would inevitably cause extreme scattering events. Our observations show that the lens moves slowly and is highly elongated on the sky. If similarly elongated along the line of sight, as would arise naturally from a sheet of plasma viewed nearly edge-on, no large over-pressure is required and hence the lens could be long-lived. Our new technique opens up the possibility of probing interstellar plasma structures in detail, leading to understanding crucial for high-precision pulsar timing and the subsequent detection of gravitational waves.
References in corpus (7)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Precision orbital dynamics from interstellar scintillation arcs for PSR J0437-4715
- Interstellar Holography
- Double-lens Scintillometry: The variable scintillation of pulsar B1508+55
- Probing the local interstellar medium with scintillometry of the bright pulsar B1133+16
- The MASIV Survey IV: relationship between intra-day scintillation and intrinsic variability of radio AGNs
Cited by in corpus (11)
- High Resolution VLBI Astrometry of pulsar scintillation screens with the Transform
- Flux Density Stability and Temporal Changes in the Spectra of Millisecond Pulsars using the GMRT
- 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
- Scattering model of scintillation arcs in pulsar secondary spectra
- The Pulsar Science Collaboratory: Multi-Epoch Scintillation Studies of Pulsars
- A direct measurement of the electron density turbulence parameter and implications for the emission size of the magnetar XTE J1810-197
- Stokes phenomena in lensing
- Scintillometry of Fast Radio Bursts: Resolution effects in two-screen models
- Using Giant Pulses to Measure the Impulse Response of the Interstellar Medium
- Plasma lensing modeling of substructures on pulsar scintillation screens