The origin of the strong magnetic fields measured in magnetars is one of the main uncertainties in the neutron star field. On the other hand, the recent discovery of a large number of such strongly magnetized neutron stars is calling for more investigation on their formation. The first proposed model for the formation of such strong magnetic fields in magnetars was through alpha-dynamo effects on the rapidly rotating core of a massive star. Other scenarios involve highly magnetic massive progenitors that conserve their strong magnetic moment into the core after the explosion, or a common envelope phase of a massive binary system. In this work, we do a complete re-analysis of the archival X-ray emission of the supernova remnants (SNRs) surro...
2S 0114+650, GX 301-2, IGR J16358-4726, X Per, 4U 2206+54, SXP 1062, and 3A 1954+319 are thought to ...
Magnetars are neutron stars in which a strong magnetic field is the main energy source. About two do...
Magnetars are the strongest magnets in the present universe and the combination of extreme magnetic ...
It is generally accepted that Anomalous X-ray Pulsars (AXPs) and Soft Gamma-ray Repeaters (SGRs) are...
Magnetars are regarded as the most magnetized neutron stars in the Universe. Aiming to unveil what k...
The magnetic field strength at birth is arguably one of the most important properties to determine t...
Stars of spectral types O and B produce neutron stars (NSs) after supernova explosions. Most of NSs ...
Remnants of massive stars, neutron stars (Nss), are valuable laboratories to study matter under extr...
We present a population synthesis study of the observed properties of the magnetars investigating th...
According to stellar evolution models, massive OB stars form neutron stars after the end of their li...
Strong magnetic field of accreting neutron stars (1014 G) is hard to probe by Xray spectroscopy but ...
The observation of several neutron stars in the centre of supernova remnants and with significantly ...
Stars of spectral types O and B produce neutron stars (NSs) after supernova explosions. Most of NSs ...
Anomalous X-ray pulsars and soft gamma repeaters have recently emerged as a unified class of neutron...
We use the recently introduced concept of a 'window' of magnetic field strengths in which pulsars ca...
2S 0114+650, GX 301-2, IGR J16358-4726, X Per, 4U 2206+54, SXP 1062, and 3A 1954+319 are thought to ...
Magnetars are neutron stars in which a strong magnetic field is the main energy source. About two do...
Magnetars are the strongest magnets in the present universe and the combination of extreme magnetic ...
It is generally accepted that Anomalous X-ray Pulsars (AXPs) and Soft Gamma-ray Repeaters (SGRs) are...
Magnetars are regarded as the most magnetized neutron stars in the Universe. Aiming to unveil what k...
The magnetic field strength at birth is arguably one of the most important properties to determine t...
Stars of spectral types O and B produce neutron stars (NSs) after supernova explosions. Most of NSs ...
Remnants of massive stars, neutron stars (Nss), are valuable laboratories to study matter under extr...
We present a population synthesis study of the observed properties of the magnetars investigating th...
According to stellar evolution models, massive OB stars form neutron stars after the end of their li...
Strong magnetic field of accreting neutron stars (1014 G) is hard to probe by Xray spectroscopy but ...
The observation of several neutron stars in the centre of supernova remnants and with significantly ...
Stars of spectral types O and B produce neutron stars (NSs) after supernova explosions. Most of NSs ...
Anomalous X-ray pulsars and soft gamma repeaters have recently emerged as a unified class of neutron...
We use the recently introduced concept of a 'window' of magnetic field strengths in which pulsars ca...
2S 0114+650, GX 301-2, IGR J16358-4726, X Per, 4U 2206+54, SXP 1062, and 3A 1954+319 are thought to ...
Magnetars are neutron stars in which a strong magnetic field is the main energy source. About two do...
Magnetars are the strongest magnets in the present universe and the combination of extreme magnetic ...