Electric field representation of pulsar intensity spectra
arXiv:astro-ph/0502534 · doi:10.1111/j.1365-2966.2005.09396.x
Abstract
Pulsar dynamic spectra exhibit high visibility fringes arising from interference between scattered radio waves. These fringes may be random or highly ordered patterns, depending on the nature of the scattering or refraction. Here we consider the possibility of decomposing pulsar dynamic spectra -- which are intensity measurements -- into their constituent scattered waves, i.e. electric field components. We describe an iterative method of achieving this decomposition and show how the algorithm performs on data from the pulsar B0834+06. The match between model and observations is good, although not formally acceptable as a representation of the data. Scattered wave components derived in this way are immediately useful for qualitative insights into the scattering geometry. With some further development this approach can be put to a variety of uses, including: imaging the scattering and refracting structures in the interstellar medium; interstellar interferometric imaging of pulsars at very high angular resolution; and mitigating pulse arrival time fluctuations due to interstellar scattering.
7 Pages, 2 Figures, revised version, accepted by MNRAS
References in corpus (2)
Cited by in corpus (17)
- Modelling and mitigating refractive propagation effects in precision pulsar timing observations
- A Scintillation Arc Survey of 22 Pulsars with Low to Moderate Dispersion Measures
- Interstellar Holography
- Effects of the ISM on Detection of Low-frequency Gravitational Waves
- The - Diagram: Transforming pulsar scintillation spectra to coordinates on highly anisotropic interstellar scattering screens
- Modeling of Interstellar Scintillation Arcs from Pulsar B1133+16
- Deconvolving Pulsar Signals with Cyclic Spectroscopy: A Systematic Evaluation
- Pulsar Double-lensing Sheds Light on the Origin of Extreme Scattering Events
- High Resolution VLBI Astrometry of pulsar scintillation screens with the Transform
- Scintillation Arc Brightness and Electron Density for an Analytical Noodle Model
- H-FISTA: A hierarchical algorithm for phase retrieval with application to pulsar dynamic spectra
- A Simultaneous Dual-Frequency Scintillation Arc Survey of Six Bright Canonical Pulsars Using the Upgraded Giant Metrewave Radio Telescope
- Pulsar Cyclic Spectroscopy in the Partial-Deconvolution Regime: Benefits & Limitations
- Morphology of solar system scale plasma lenses in the interstellar medium: a test from pulsar scintillation parabolic arcs
- Plasma lensing modeling of substructures on pulsar scintillation screens
- Interstellar Interferometry: Precise Curvature Measurement from Pulsar Secondary Spectra
- Interstellar scattering - New diagnostics of pulsars and the ISM