Using Giant Pulses to Measure the Impulse Response of the Interstellar Medium
arXiv:2305.13274 · doi:10.3847/1538-4357/acec3a
Abstract
Giant pulses emitted by PSR B1937+21 are bright, intrinsically impulsive bursts. Thus, the observed signal from a giant pulse is a noisy but direct measurement of the impulse response from the ionized interstellar medium. We use this fact to detect 13,025 giant pulses directly in the baseband data of two observations of PSR B1937+21. Using the giant pulse signals, we model the time-varying impulse response with a sparse approximation method, in which the time dependence at each delay is decomposed in Fourier components, thus constructing a wavefield as a function of delay and differential Doppler shift. We find that the resulting wavefield has the expected parabolic shape, with several diffuse structures within it, suggesting the presence of multiple scattering locations along the line of sight. We also detect an echo at a delay of about 2.4 ms, over 1.5 times the rotation period of the pulsar, which between the two observations moves along the trajectory expected from geometry. The structures in the wavefield are insufficiently sparse to produce a complete model of the system, and hence the model is not predictive across gaps larger than about the scintillation time. Nevertheless, within its range, it reproduces about 75% of the power of the impulse response, a fraction limited mostly by the signal-to-noise ratio of the observations. Furthermore, we show that by deconvolution, using the model impulse response, we can successfully recover the intrinsic pulsar emission from the observed signal.
14 pages, 8 figures, Accepted for publication in ApJ
References in corpus (13)
- 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
- TEMPO2, a new pulsar timing package. I: Overview
- Tempo2, a new pulsar timing package. II: The timing model and precision estimates
- A Study of Multi-frequency Polarization Pulse Profiles of Millisecond Pulsars
- A Scintillation Arc Survey of 22 Pulsars with Low to Moderate Dispersion Measures
- Interstellar Holography
- The NANOGrav 12.5-Year Data Set: Polarimetry and Faraday Rotation Measures from Observations of Millisecond Pulsars with the Green Bank Telescope
- The Thousand-Pulsar-Array programme on MeerKAT -- X. Scintillation arcs of 107 pulsars
- Resolving the Emission Regions of the Crab Pulsar's Giant Pulses II. Evidence for Relativistic Motion
- Giant pulses from J1823-3021A observed with the MeerKAT telescope
- Pulsar Double-lensing Sheds Light on the Origin of Extreme Scattering Events
- H-FISTA: A hierarchical algorithm for phase retrieval with application to pulsar dynamic spectra