Single-pulse radio observations of the Galactic Center magnetar PSR J1745-2900
arXiv:1510.00183 · doi:10.1088/0004-637X/814/1/5
Abstract
In this paper, we report radio observations of the Galactic Center magnetar PSR J1745-2900 at six epochs between June and October, 2014. These observations were carried out using the new Shanghai Tian Ma Radio Telescope at a frequency of 8.6 GHz. Both the flux density and integrated profile of PSR J1745-2900 show dramatic changes from epoch to epoch showing that the pulsar was in its "erratic" phase. On MJD 56836, the flux density of this magnetar was about 8.7 mJy, which was ten times large than that reported at the time of discovery, enabling a single-pulse analysis. The emission is dominated by narrow "spiky" pulses which follow a log-normal distribution in peak flux density. From 1913 pulses, we detected 53 pulses whose peak flux density is ten times greater than that of the integrated profile. They are concentrated in pulse phase at the peaks of the integrated profile. The pulse widths at the 50% level of these bright pulses was between 0.2 to 0.9 deg, much narrower than that of integrated profile (~12 deg). The observed pulse widths may be limited by interstellar scattering. No clear correlation was found between the widths and peak flux density of these pulses and no evidence was found for subpulse drifting. Relatively strong spiky pulses are also detected in the other five epochs of observation, showing the same properties as that detected in MJD 56836. These strong spiky pulses cannot be classified as "giant" pulses but are more closely related to normal pulse emission.
21 papes, 7 figures, accepted by ApJ
References in corpus (9)
- TEMPO2, a new pulsar timing package. I: Overview
- PSRCHIVE and PSRFITS An Open Approach to Radio Pulsar Data Storage and Analysis
- The magnetar 1E 1547.0-5408: radio spectrum, polarimetry, and timing
- The subpulse modulation properties of pulsars at 92 cm and the frequency dependence of subpulse modulation
- Is pulsar B0656+14 a very nearby RRAT source?
- Radio emission evolution, polarimetry and multifrequency single pulse analysis of the radio magnetar PSR J1622-4950
- Discovery of two pulsars towards the Galactic Centre
- Timing and Flux Evolution of the Galactic Center Magnetar SGR J1745-2900
- Simultaneous multi-frequency single-pulse properties of AXP XTE J1810-197
Cited by in corpus (23)
- Constraining the Braking Indices of Magnetars
- The NANOGrav Nine-Year Data Set: Noise Budget for Pulsar Arrival Times on Intraday Timescales
- Pulse Morphology of the Galactic Center Magnetar PSR J1745-2900
- TMRT Observations of Carbon-chain molecules in Serpens South 1A
- 5 GHz TMRT observations of 71 pulsars
- TMRT observations of 26 pulsars at 8.6 GHz
- Simultaneous 13 cm/3 cm single-pulse observations of PSR B0329+54
- A spectral line survey of IRC +10216 between 13.3 and 18.5 GHz
- East Asian VLBI Network Observations of Active Galactic Nuclei Jets: Imaging with KaVA+Tianma+Nanshan
- Investigating multi-frequency pulse profiles of PSRs B0329+54 and B1642-03 in an inverse Compton scattering (ICS) model
- Simultaneous 2.25/8.60 GHz observations of the newly discovered magnetar -- Swift J1818.0-1607
- Multi-frequency Radio Profiles of PSR B1133+16: radiation location and particle energy
- An International Survey of Front-End Receivers and Observing Performance of Telescopes for Radio Astronomy
- Observations of Radio Magnetars with the Deep Space Network
- VLA Observations of Single Pulses from the Galactic Center Magnetar
- Spectro-temporal Emission from the Galactic Center Magnetar
- One large glitch in PSR B1737-30 detected with the TMRT
- New timing measurement results of 16 pulsars
- Radio Emission of Pulsars. II. Coherence Catalyzed by Cerenkov-Unstable Shear Alfvén Waves
- Three aspects of the radius-to-frequency mapping in fast radio bursts
- Pre-perihelion radio observations of comet 12P/Pons-Brooks with Tianma radio telescope
- The High Frequency Radio Emission of the Galactic Center Magnetar SGR J1745-29 During a Transitional Period
- On the Deepest Search for Galactic Center Pulsars and an Examination of an Intriguing Millisecond Pulsar Candidate