Litcius/Paper detail

The Effects of Plasma Lensing on the Inferred Dispersion Measures of Fast Radiobursts

Xinzhong Er, Yuan-Pei Yang, Adam Rogers

2020The Astrophysical Journal27 citationsDOIOpen Access PDF

Abstract

Abstract Radio signals are delayed when propagating through plasma. This type of delay is frequency dependent and is usually used for estimating the projected number density of electrons along the line of sight, called the dispersion measure (DM). The dense and clumpy distribution of plasma can cause refractive deflections of radio signals, analogous to lensing effects. Similar to gravitational lensing, there are two contributions to the time delay effect in plasma lensing: a geometric delay, due to increased path length of the signal, and a dispersive delay due to the change of speed of light in a plasma medium. We show the delay time for two models of the plasma distribution, and point out that the estimated DM can be biased. Since the contribution of the geometric effect can be comparable to that of the dispersive delay, the bias in the measured DM can be dramatically large if plasma lensing effects are not taken into account when signals propagate through a high-density gradient clump of plasma.

Topics & Concepts

PhysicsPlasmaDispersion (optics)OpticsGravitational lensLine (geometry)AstrophysicsComputational physicsPlasma oscillationElectronElectron densityOptical depthWavelengthOpacityPath lengthGeometrical opticsElectron temperaturePlasma parametersMeasure (data warehouse)Refractive indexDispersion relationVelocity dispersionWeak gravitational lensingOptical path lengthRadio Astronomy Observations and TechnologyIonosphere and magnetosphere dynamicsElectrical and Electromagnetic Research