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Soft Gamma-ray Repeaters (SGRs) are among the most enigmatic sources known today. Exhibiting huge X- and Gamma-ray bursts and flares, as well as soft quiescent X-ray emission, their energy source remains a mystery. Just as mysterious are…

Important constraints on the properties of the Anomalous X-ray Pulsars (AXPs) and Soft Gamma-Ray Repeaters (SGRs) can be provided by their associations with supernova remnants (SNRs). We have made a radio search for SNRs towards the AXPs RX…

Astrophysics · Physics 2009-10-19 B. M. Gaensler , P. O. Slane , E. V. Gotthelf , G. Vasisht

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 magnetar model involves an isolated neutron star with a very high magnetic field (B~10^14-10^15 G), and is invoked to explain the emission processes of two classes of sources, the Anomalous X-ray Pulsars (AXPs) and the Soft Gamma-Ray…

Astrophysics · Physics 2008-01-17 Diego Gotz

AXPs and SGRs constitute a special population of young neutron stars, which are thought to be magnetars, i.e., neutron stars with super-strong magnetic fields (10^14 - 10^15 G). Assuming that AXPs and SGRs accrete matter from a fallback…

High Energy Astrophysical Phenomena · Physics 2010-11-09 J. E. Trümper , N. D. Kylafis , Ü. Ertan , A. Zezas

Soft gamma repeaters (SGRs) and anomalous X-ray pulsars (AXPs) are two groups of enigmatic objects, which have been extensively investigated in past few decades. Based on the ample information about their timing behaviors, spectra, and…

High Energy Astrophysical Phenomena · Physics 2014-12-10 J. Wang , H. -K. Chang

The concept of a "magnetar" was proposed mainly because of two factors. First, the X-ray luminosity of Anomalous X-ray Pulsars (AXPs) and Soft Gamma-Ray Repeaters (SGRs) is larger than the rotational energy loss rate, and second, the…

High Energy Astrophysical Phenomena · Physics 2015-06-12 Guojun Qiao , Xiongwei Liu , Renxin Xu , Yuanjie Du , Jinlin Han , Hao Tong , Hongguang Wang

We explore the possibility that soft gamma-ray repeaters (SGRs) and anomalous X-ray pulsars (AXPs) are powered by highly magnetized white dwarfs (B-WDs). We take a sample of SGRs and AXPs and provide the possible parameter space in mass,…

High Energy Astrophysical Phenomena · Physics 2016-05-10 Banibrata Mukhopadhyay , A. R. Rao

Many of the properties of anomalous X-ray pulsars (AXPs) and soft gamma-ray repeaters (SGRs) are still a matter of much debate, as is the connection (if any) between these two groups of sources. In cases where we can identify the supernova…

Astrophysics · Physics 2009-11-07 Bryan Gaensler

The nature of AXPs/SGRs (anomalous X-ray pulsars/soft $\gamma$-ray repeaters) and high field radio pulsars is still unclear even in the magnetar and/or accretion models. The detection of radio emission from AXP XTE J1810$-$197 and the…

Astrophysics · Physics 2007-05-23 Y. L. Yue , W. W. Zhu , R. X. Xu

Developments over the last couple of years have supported the interpretation that anomalous X-ray pulsars (AXPs) and soft gamma repeaters (SGRs) possess unusually high magnetic fields, and furthermore may represent a class or classes of…

Astrophysics · Physics 2007-05-23 Matthew G. Baring , Alice K. Harding

Currently, two competing models are invoked in order to explain the observable properties of Anomalous X-ray Pulsars (AXPs). One model assumes that AXP emission is powered by a strongly magnetized neutron star - i.e., a magnetar. Other…

Astrophysics · Physics 2007-05-23 G. J. Francischelli , R. A. M. J. Wijers

It is now commonly believed that Soft gamma-ray repeaters (SGRs) and Anomalous X-ray pulsars (AXPs) are magnetars -- neutron stars powered by their magnetic fields. However, what differentiates these two seemingly dissimilar objects is, at…

Astrophysics · Physics 2009-11-07 S. R. Kulkarni , D. L. Kaplan , H. L. Marshall , D. A. Frail , T. Murakami , D. Yonetoku

Soft gamma-ray repeaters (SGRs) and anomalous x-ray pulsars (AXPs) are young (<100 kyr), radio-quiet, x-ray pulsars which have been rapidly spun-down to slow spin periods clustered at 5-12 s. Nearly all of these unusual pulsars also appear…

Astrophysics · Physics 2009-10-31 David Marsden , Richard Lingenfelter , Richard Rothschild , James Higdon

Gravitational waves (GWs) emission due to magnetic deformation mechanism is applied for Soft Gamma Repeaters (SGRs) and Anomalous X-Ray Pulsars(AXPs), described as fast-spinning and magnetized white dwarfs (WDs). The emission is caused by…

Solar and Stellar Astrophysics · Physics 2020-09-29 Manoel F. Sousa , Jaziel G. Coelho , José C. N. de Araujo

The key point of studying AXPs/SGRs (anomalous X-ray pulsars/soft gamma-ray repeaters) is relevant to the energy budget. Historically, rotation was thought to be the only free energy of pulsar until the discovery of accretion power in X-ray…

High Energy Astrophysical Phenomena · Physics 2015-06-11 H. Tong , R. X. Xu

We show that the soft gamma-ray repeaters (SGRs) and anomalous X-ray pulsars (AXPs) can be explained as recently proposed highly magnetized white dwarfs (B-WDs). The radius and magnetic field of B-WDs are perfectly adequate to explain…

Solar and Stellar Astrophysics · Physics 2016-03-02 Banibrata Mukhopadhyay , A. R. Rao

Soft gamma-ray repeaters (SGRs) and anomalous X-ray pulsars (AXPs) are slowly rotating, isolated neutron stars that sporadically undergo episodes of long-term flux enhancement (outbursts) generally accompanied by the emission of short…

Anomalous X-ray pulsars (AXPs) and soft gamma-ray repeaters (SGRs) are recognized as the most promising magnetar candidates, as indicated by their energetic bursts and rapid spin-downs. It is expected that the strong magnetic field leaves…

High Energy Astrophysical Phenomena · Physics 2015-05-27 Shan-Shan Weng , Ersin Gogus , Tolga Guver , Lin Lin

SGRs/AXPs are considered a subclass of pulsars powered by magnetic energy and not by rotation, as normal radio pulsars. They are understood as strongly magnetized neutron star, with large periods of rotation $P\sim(2-12)$ s, and large…

Solar and Stellar Astrophysics · Physics 2013-08-01 J. G. Coelho , M. Malheiro