English
Related papers

Related papers: The dynamic magnetosphere of Swift J1818.0$-$1607

200 papers

The soft-gamma repeater Swift J1818.0$-$1607 is only the fifth magnetar found to exhibit pulsed radio emission. Using the Ultra-Wideband Low receiver system of the Parkes radio telescope, we conducted a 3 h observation of Swift…

High Energy Astrophysical Phenomena · Physics 2020-06-19 Marcus E. Lower , Ryan M. Shannon , Simon Johnston , Matthew Bailes

The shape and polarisation properties of the radio pulse profiles of radio-loud magnetars provide a unique opportunity to investigate their magnetospheric properties. Gaussian Process Regression analysis was used to investigate the…

We report on Green Bank Telescope observations of the radio magnetar Swift J1818.0--1607 between 820 MHz and 35 GHz, taken from six to nine months after its 2020 March outburst. We obtained multi-hour observations at six frequencies,…

High Energy Astrophysical Phenomena · Physics 2025-07-17 Evan F. Lewis , Harsha Blumer , Ryan S. Lynch , Maura A. McLaughlin

We report on multi-frequency radio observations of the new magnetar Swift J1818.0-1607, following it for more than one month with high cadence. The observations commenced less than 35 hours after its registered first outburst. We obtained…

We report on the the long term monitoring campaign of the seemingly youngest magnetar Swift~J1818.0-1607 at radio and X-ray wavelengths over a span of one year. We obtained a coherent timing solution for the magnetar over the same time…

High Energy Astrophysical Phenomena · Physics 2022-03-02 K. M. Rajwade , B. W. Stappers , A. G. Lyne , B. Shaw , M. B. Mickaliger , K. Liu , M. Kramer , G. Desvignes , R. Karuppusamy , T. Enoto , T. Güver , Chin-Ping Hu , M. P. Surnis

We present polarization observations of the radio emitting magnetar AXP J1810-197. Using simultaneous multi-frequency observations performed at 1.4, 4.9 and 8.4 GHz, we obtained polarization information for single pulses and the average…

Astrophysics · Physics 2008-11-26 M. Kramer , B. W. Stappers , A. Jessner , A. G. Lyne , C. A. Jordan

Here we report on observations of the radio magnetar PSR J1622-4950 at frequencies from 1.4 to 17 GHz. We show that although its flux density is varying up to a factor of ~10 within a few days, it has on average decreased by a factor of 2…

We have used the Parkes radio telescope to study the polarized emission from the anomalous X-ray pulsar XTE J1810-197 at frequencies of 1.4, 3.2, and 8.4 GHz. We find that the pulsed emission is nearly 100% linearly polarized. The position…

Astrophysics · Physics 2009-11-13 F. Camilo , J. Reynolds , S. Johnston , J. P. Halpern , S. M. Ransom , W. van Straten

Swift J1818.0-1607 discovered in early 2020 is not only the fifth magnetar known with periodic radio pulsations but also the fastest rotating one. Simultaneous 2.25 and 8.60 GHz observations of Swift J1818.0-1607 were carried out with…

High Energy Astrophysical Phenomena · Physics 2021-05-26 Zhi-Peng Huang , Zhen Yan , Zhi-Qiang Shen , Hao Tong , Lin Lin , Jian-Ping Yuan , Jie Liu , Ru-Shuang Zhao , Ming-Yu Ge , Rui Wang

We report results from an observational campaign of the radio-loud magnetar Swift J1818.0-1607 using the Green Bank Telescope (GBT) at 2.0 GHz, which began in November 2021 during a period of reduced activity approximately 20 months after…

High Energy Astrophysical Phenomena · Physics 2025-07-29 Moaz Abdelmaguid , Paulo C. C. Freire , Joseph D. Gelfand , Yogesh Maan , Samayra Straal , J. A. J. Alford

We present the long-term spectro-temporal evolution of the average radio emission properties of the magnetar XTE J1810-197 (PSR J1809-1943) following its most recent outburst in late 2018. We report the results from two and a half years of…

High Energy Astrophysical Phenomena · Physics 2022-06-01 Yogesh Maan , Mayuresh P. Surnis , Bhal Chandra Joshi , Manjari Bagchi

The magnetar Swift ,J1818.0-1607 was discovered in March 2020 when Swift detected a 9 ms hard X-ray burst and a long-lived outburst. Prompt X-ray observations revealed a spin period of 1.36 s, soon confirmed by the discovery of radio…

The anomalous X-ray pulsar XTE J1810$-$197 was the first magnetar found to emit pulsed radio emission. After spending almost a decade in a quiescent, radio-silent state, the magnetar was reported to have undergone a radio outburst in…

Swift J1818.0-1607 is a radio-loud magnetar with a spin period of 1.36 s and a dipolar magnetic field strength of B~3E14 G, which is very young compared to the Galactic pulsar population. We report here on the long-term X-ray monitoring…

Radio pulsars are believed to have their emission powered by the loss of rotational kinetic energy. By contrast, magnetars show intense X-ray and gamma-ray radiation whose luminosity greatly exceeds that due to spin-down and is believed to…

High Energy Astrophysical Phenomena · Physics 2016-10-05 R. F. Archibald , V. M. Kaspi , S. P. Tendulkar , P. Scholz

After spending almost a decade in a radio-quiet state, the Anomalous X-ray Pulsar XTE J1810-197 turned back on in early December 2018. We have observed this radio magnetar at 1.5 GHz with ~daily cadence since the first detection of radio…

High Energy Astrophysical Phenomena · Physics 2019-08-07 L. Levin , A. G. Lyne , G. Desvignes , R. P. Eatough , R. Karuppusamy , M. Kramer , M. Mickaliger , B. W. Stappers , P. Weltevrede

XTE J1810-197 (J1810) was the first magnetar identified to emit radio pulses, and has been extensively studied during a radio-bright phase in 2003$-$2008. It is estimated to be relatively nearby compared to other Galactic magnetars, and…

Instrumentation and Methods for Astrophysics · Physics 2020-09-02 H. Ding , A. T. Deller , M. E. Lower , C. Flynn , S. Chatterjee , W. Brisken , N. Hurley-Walker , F. Camilo , J. Sarkissian , V. Gupta

We report on the multi-frequency multi-epoch radio observations of the magnetar, XTE J1810-197, which exhibited a radio outburst from December 2018 after its 10-year quiescent period. We performed quasi-simultaneous observations with VERA…

Magnetars are young, rotating neutron stars that possess larger magnetic fields ($B$ $\approx$ $10^{13}$-$10^{15}$ G) and longer rotational periods ($P$ $\approx$ 1-12 s) than ordinary pulsars. In contrast to rotation-powered pulsars,…

As part of a survey for radio pulsars with the Parkes 64-m telescope we have discovered PSR J1622-4950, a pulsar with a 4.3-s rotation period. Follow-up observations show that the pulsar has the highest inferred surface magnetic field of…

‹ Prev 1 2 3 10 Next ›