The GBT350 Survey of the Northern Galactic Plane for Radio Pulsars and Transients
arXiv:0710.1745 · doi:10.1063/1.2900310
Abstract
Using the Green Bank Telescope (GBT) and Pulsar Spigot at 350MHz, we have surveyed the Northern Galactic Plane for pulsars and radio transients. This survey covers roughly 1000 square degrees of sky within 75 deg < l < 165 deg and |b| < 5.5 deg, a region of the Galactic Plane inaccessible to both the Parkes and Arecibo multibeam surveys. The large gain of the GBT along with the high time and frequency resolution provided by the Spigot make this survey more sensitive by factors of about 4 to slow pulsars and more than 10 to millisecond pulsars (MSPs), compared with previous surveys of this area. In a preliminary, reduced-resolution search of all the survey data, we have discovered 33 new pulsars, almost doubling the number of known pulsars in this part of the Galaxy. While most of these sources were discovered by normal periodicity searches, 5 of these sources were first identified through single, dispersed bursts. We discuss the interesting properties of some of these new sources. Data processing using the data's full-resolution is ongoing, with the goal of uncovering MSPs missed by our first, coarse round of processing.
To appear in the proceedings of "Forty Years of Pulsars: Millisecond Pulsars, Magnetars and More" held in Montreal, Canada, August 12-17, 2007. 3 pages, 2 figures
Cited by in corpus (8)
- The Green Bank Telescope 350 MHz Drift-scan Survey II: Data Analysis and the Timing of 10 New Pulsars, Including a Relativistic Binary
- The LOFAR Pilot Surveys for Pulsars and Fast Radio Transients
- The FAST Galactic Plane Pulsar Snapshot survey: VI. The discovery of 473 new pulsars
- FAST early pulsar discoveries: Effelsberg follow-up
- Pushchino multibeams pulsar search. IV. Detection of new pulsars at declinations -9o < δ< +55o
- Observations of Rotating Radio Transients with the First Station of the Long Wavelength Array
- The SPAN512 mid-latitude pulsar survey at the Nançay Radio Telescope
- Transient Radio Neutron Stars