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Related papers: Pulse Frequency Fluctuations of Magnetars

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Several recent papers conclude that radio-pulsar magnetic fields decay on a time-scale of 10 Myr, apparently contradicting earlier results. We have implemented the methods of these papers in our code and show that this preference for rapid…

Astrophysics · Physics 2007-05-23 Joeri van Leeuwen , Frank Verbunt

Spin pumping by a moving magnetization gives rise to an electric voltage over a spin valve. Thermal fluctuations of the magnetization manifest themselves as increased thermal voltage noise with absorption lines at the ferromagnetic…

Mesoscale and Nanoscale Physics · Physics 2009-05-13 Jiang Xiao , Gerrit E. W. Bauer , Sadamichi Maekawa , Arne Brataas

Magnetars are neutron stars in which a strong magnetic field is the main energy source. About two dozens of magnetars, plus several candidates, are currently known in our Galaxy and in the Magellanic Clouds. They appear as highly variable…

High Energy Astrophysical Phenomena · Physics 2015-06-24 Sandro Mereghetti , Jose' Pons , Andrew Melatos

New radio (MeerKAT and Parkes) and X-ray (XMM-Newton, Swift, Chandra, and NuSTAR) observations of PSR J1622-4950 indicate that the magnetar, in a quiescent state since at least early 2015, reactivated between 2017 March 19 and April 5. The…

High Energy Astrophysical Phenomena · Physics 2018-04-06 F. Camilo , P. Scholz , M. Serylak , S. Buchner , M. Merryfield , V. M. Kaspi , R. F. Archibald , M. Bailes , A. Jameson , W. van Straten , J. Sarkissian , J. E. Reynolds , S. Johnston , G. Hobbs , T. D. Abbott , R. M. Adam , G. B. Adams , T. Alberts , R. Andreas , K. M. B. Asad , D. E. Baker , T. Baloyi , E. F. Bauermeister , T. Baxana , T. G. H. Bennett , G. Bernardi , D. Booisen , R. S. Booth , D. H. Botha , L. Boyana , L. R. S. Brederode , J. P. Burger , T. Cheetham , J. Conradie , J. P. Conradie , D. B. Davidson , G. de Bruin , B. de Swardt , C. de Villiers , D. I. L. de Villiers , M. S. de Villiers , W. de Villiers , C. de Waal , M. A. Dikgale , G. du Toit , L. J. du Toit , S. W. P. Esterhuyse , B. Fanaroff , S. Fataar , A. R. Foley , G. Foster , D. Fourie , R. Gamatham , T. Gatsi , R. Geschke , S. Goedhart , T. L. Grobler , S. C. Gumede , M. J. Hlakola , A. Hokwana , D. H. Hoorn , D. Horn , J. Horrell , B. Hugo , A. Isaacson , O. Jacobs , J. P. Jansen van Rensburg , J. L. Jonas , B. Jordaan , A. Joubert , F. Joubert , G. I. G. Jozsa , R. Julie , C. C. Julius , F. Kapp , A. Karastergiou , F. Karels , M. Kariseb , R. Karuppusamy , V. Kasper , E. C. Knox-Davies , D. Koch , P. P. A. Kotze , A. Krebs , N. Kriek , H. Kriel , T. Kusel , S. Lamoor , R. Lehmensiek , D. Liebenberg , I. Liebenberg , R. T. Lord , B. Lunsky , N. Mabombo , T. Macdonald , P. Macfarlane , K. Madisa , L. Mafhungo , L. G. Magnus , C. Magozore , O. Mahgoub , J. P. L. Main , S. Makhathini , J. A. Malan , P. Malgas , J. R. Manley , M. Manzini , L. Marais , N. Marais , S. J. Marais , M. Maree , A. Martens , S. D. Matshawule , N. Matthysen , T. Mauch , L. D. Mc Nally , B. Merry , R. P. Millenaar , C. Mjikelo , N. Mkhabela , N. Mnyandu , I. T. Moeng , O. J. Mokone , T. E. Monama , K. Montshiwa , V. Moss , M. Mphego , W. New , B. Ngcebetsha , K. Ngoasheng , H. Niehaus , P. Ntuli , A. Nzama , F. Obies , M. Obrocka , M. T. Ockards , C. Olyn , N. Oozeer , A. J. Otto , Y. Padayachee , S. Passmoor , A. A. Patel , S. Paula , A. Peens-Hough , B. Pholoholo , P. Prozesky , S. Rakoma , A. J. T. Ramaila , I. Rammala , Z. R. Ramudzuli , M. Rasivhaga , S. Ratcliffe , H. C. Reader , R. Renil , L. Richter , A. Robyntjies , D. Rosekrans , A. Rust , S. Salie , N. Sambu , C. T. G. Schollar , L. Schwardt , S. Seranyane , G. Sethosa , C. Sharpe , R. Siebrits , S. K. Sirothia , M. J. Slabber , O. Smirnov , S. Smith , L. Sofeya , N. Songqumase , R. Spann , B. Stappers , D. Steyn , T. J. Steyn , R. Strong , A. Struthers , C. Stuart , P. Sunnylall , P. S. Swart , B. Taljaard , C. Tasse , G. Taylor , I. P. Theron , V. Thondikulam , K. Thorat , A. Tiplady , O. Toruvanda , J. van Aardt , T. van Balla , L. van den Heever , A. van der Byl , C. van der Merwe , P. van der Merwe , P. C. van Niekerk , R. van Rooyen , J. P. van Staden , V. van Tonder , R. van Wyk , I. Wait , A. L. Walker , B. Wallace , M. Welz , L. P. Williams , B. Xaia , N. Young , S. Zitha

We present a Chandra and XMM-Newton study of X-ray emission from the lobes of 33 classical double radio galaxies and quasars. We report new detections of lobe-related X-ray emission in 11 sources. Together with previous detections we find…

Astrophysics · Physics 2009-11-10 J. H. Croston , M. J. Hardcastle , D. E. Harris , E. Belsole , M. Birkinshaw , D. M. Worrall

Magnetars are highly-magnetised rotating neutron stars that are predominantly observed as high-energy sources. Six of this class of neutron star are known to also emit radio emission, and magnetars are, thus, a favoured model for the origin…

High Energy Astrophysical Phenomena · Physics 2023-11-27 Michael Kramer , Kuo Liu , Gregory Desvignes , Ramesh Karuppusamy , Ben W. Stappers

The recent detection of a Fast Radio Burst (FRB) from a Galactic magnetar secured the fact that neutron stars (NSs) with super-strong magnetic fields are capable of producing these extremely bright coherent radio bursts. One of the leading…

High Energy Astrophysical Phenomena · Physics 2022-03-30 Shotaro Yamasaki , Kazim Yavuz Eksi , Ersin Gogus

Recent studies have shown possible connections between highly magnetized neutron stars ("magnetars"), whose X-ray emission is too bright to be powered by rotational energy, and ordinary radio pulsars. In addition to the magnetar SGR…

High Energy Astrophysical Phenomena · Physics 2017-04-12 J. Dexter , N. Degenaar , M. Kerr , A. Deller , J. Deneva , P. Lazarus , M. Kramer , D. Champion , R. Karuppusamy

We analyze a wide set of historical magnetar burst observations detected with five different instruments, calibrating these to the energy range of Fermi-GBM observations for consistency. We find a striking correlation between a magnetar's…

High Energy Astrophysical Phenomena · Physics 2025-09-17 Ozge Keskin , Samuel K. Lander , Ersin Gogus

In the framework of the magnetar model for the Soft Gamma Repeaters and Anomalous X-ray Pulsars, we consider the structure of neutron star magnetospheres threaded by large-scale electrical currents. We construct self-similar, force-free…

Astrophysics · Physics 2007-05-23 M. Lyutikov , C. Thompson , S. R. Kulkarni

Magnetars and central compact objects (CCOs) are subgroups of neutron stars that show a number of properties distinguished from canonical radio pulsars. We performed radio observations of three magnetars SGR 0418+5729, 1E 2259+586, 4U…

High Energy Astrophysical Phenomena · Physics 2024-02-09 Wan-Jin Lu , Ping Zhou , Pei Wang , Yi-Xuan Shao , Xiang-Dong Li , Jacco Vink , Di Li , Yang Chen

Recent observations of giant flares from soft gamma-ray repeaters have exhibited multiple 25-150 Hz oscillations. Frequencies in this range are expected for toroidal shear waves in a neutron star (NS) crust, lending support to Duncan's…

Astrophysics · Physics 2009-11-13 Anthony L. Piro

I will review the latest developments in understanding the high-energy emission of rotation-powered pulsars and magnetically-powered Anomalous X-ray Pulsars (AXPs) and Soft Gamma-Ray Repeaters (SGRs). These fields have been extremely active…

Astrophysics · Physics 2016-08-30 Alice K. Harding

The observed long-term spin-down evolution of isolated radio pulsars cannot be explained by the standard magnetic dipole radiation with a constant braking torque. However how and why the torque varies still remains controversial, which is…

Solar and Stellar Astrophysics · Physics 2015-06-18 Yi Xie , Shuang-Nan Zhang

We measured temporal and emission properties of quiescent magnetars using archival Chandra and XMM-Newton data, produced a list of the properties for 17 magnetars, and revisited previously suggested correlations between the properties. Our…

High Energy Astrophysical Phenomena · Physics 2023-04-12 Jiwoo Seo , Jaewon Lee , Hongjun An

We have investigated the radio emission from the anomalous X-ray pulsar 1E 1547.0-5408 (PSR J1550-5418) using the Parkes telescope and the Australia Telescope Compact Array. The flux density of the pulsar is roughly the same between 1.4 and…

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

New results based on methods of population synthesis, concerning magnetic field effects on the evolution of pulsars are reported. The present study confirms that models with timescales for the magnetic field decay longer than the pulsar…

Astrophysics · Physics 2009-11-06 T. Regimbau , J. A. de Freitas Pacheco

We investigate the gravitational wave background produced by magnetars. The statistical properties of these highly magnetized stars were derived by population synthesis methods and assumed to be also representative of extragalactic objects.…

Astrophysics · Physics 2009-11-16 Tania Regimbau , José Antonio de Freitas Pacheco

Neutron stars can have, in some phases of their life, extremely strong magnetic fields, up to 10^15-10^16 G. These objects, named magnetars, could be powerful sources of gravitational waves, since their magnetic field could determine large…

Solar and Stellar Astrophysics · Physics 2015-05-20 L. Gualtieri , R. Ciolfi , V. Ferrari

The study of magnetars is of particular relevance since these objects are the only laboratories where the physics in ultra-strong magnetic fields can be directly tested. Until now, spectroscopic and timing measurements at X-ray energies in…

High Energy Astrophysical Phenomena · Physics 2015-06-18 Roberto Taverna , Fabio Muleri , Roberto Turolla , Paolo Soffitta , Sergio Fabiani , Luciano Nobili
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