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The NANOGrav 11-year Data Set: Solar Wind Sounding Through Pulsar Timing

Authors :
Timothy Dolch
Duncan R. Lorimer
Ryan S. Lynch
Cherry Ng
Elizabeth C. Ferrara
Kathryn Crowter
Paul S. Ray
David J. Nice
Chiara M. F. Mingarelli
Timothy T. Pennucci
Paul Demorest
J. A. Ellis
M. L. Jones
Renée Spiewak
Ingrid H. Stairs
James M. Cordes
Shami Chatterjee
J. K. Swiggum
Zaven Arzoumanian
Kevin Stovall
Peter A. Gentile
Glenn Jones
Robert D. Ferdman
D. R. Madison
Weiwei Zhu
Michael T. Lam
Megan E. DeCesar
Emmanuel Fonseca
Maura McLaughlin
Scott M. Ransom
Lina Levin
Publication Year :
2018

Abstract

The North American Nanohertz Observatory for Gravitational Waves (NANOGrav) has observed dozens of millisecond pulsars for over a decade. We have accrued a large collection of dispersion measure (DM) measurements sensitive to the total electron content between Earth and the pulsars at each observation. All lines of sight cross through the solar wind which produces correlated DM fluctuations in all pulsars. We develop and apply techniques for extracting the imprint of the solar wind from the full collection of DM measurements in the recently released NANOGrav 11-yr data set. We filter out long time scale DM fluctuations attributable to structure in the interstellar medium and carry out a simultaneous analysis of all pulsars in our sample that can differentiate the correlated signature of the wind from signals unique to individual lines of sight. When treating the solar wind as spherically symmetric and constant in time, we find the electron number density at 1 A.U. to be $7.9\pm0.2$ cm$^{-3}$. Our data shows little evidence of long-term variation in the density of the wind. We argue that our techniques paired with a high cadence, low radio frequency observing campaign of near-ecliptic pulsars would be capable of mapping out large-scale latitudinal structure in the wind.<br />15 pages, submitted to ApJ

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....d4e3792f97452a0965eb64013ffd0393