A substantial fraction of the known neutron stars resides in X-ray binaries—systems in which one compact object accretes matter from a companion star. Neutron stars in X-ray binaries have magnetic fields among the highest found in the Universe, spanning at least the range from ̃108 to several 1013 G. The magnetospheres around these neutron stars have a strong influence on the accretion process, which powers most of their emission. The magnetic field intensity and geometry, are among the main factors responsible for the large variety of spectral and timing properties observed in the X-ray energy range, making these objects unique laboratories to study the matter behavior and the radiation processes in magnetic fields unaccessible on Earth. I...
Accreting neutron stars can produce jets only if they are weakly magnetized (B~10^8 G). On the other...
The extreme physical properties of neutron stars make them efficient emitters at all wavelengths of ...
I give an overview of the most important observational tools to study the magnetospheres of accretin...
Estimates of the magnetic field of neutron stars in X-ray pulsars are obtained using the hypothesis ...
Observations of accreting neutron stars (NSs) with strong magnetic fields can be used not only for s...
Some of the fundamental neutron star parameters, such as the mass and the magnetic field strength, w...
In this work we have estimated upper and lower limits to the strength of the magnetic dipole moment...
We describe here a method to put an upper limit to the strength of the magnetic field of neutron sta...
We explore the possibility of explaining the properties of the Be/X-ray pulsars observed in the Smal...
Neutron stars are the most compact and magnetic type of stars known in the universe. If a neutron st...
We investigate the evolution of the magnetic fields of isolated pulsars and neutron stars in differe...
Neutron stars (NSs) powered by accretion, which are known as accretion-powered NSs, always are locat...
Aims. The magnetic field of accreting neutron stars determines their overall behavior including the ...
Anomalous X-ray Pulsars (AXPs) belong to a class of neutron stars believed to harbor the strongest m...
The thesis comprises new results on emission phenomena associated with neutron stars (NSs). It descr...
Accreting neutron stars can produce jets only if they are weakly magnetized (B~10^8 G). On the other...
The extreme physical properties of neutron stars make them efficient emitters at all wavelengths of ...
I give an overview of the most important observational tools to study the magnetospheres of accretin...
Estimates of the magnetic field of neutron stars in X-ray pulsars are obtained using the hypothesis ...
Observations of accreting neutron stars (NSs) with strong magnetic fields can be used not only for s...
Some of the fundamental neutron star parameters, such as the mass and the magnetic field strength, w...
In this work we have estimated upper and lower limits to the strength of the magnetic dipole moment...
We describe here a method to put an upper limit to the strength of the magnetic field of neutron sta...
We explore the possibility of explaining the properties of the Be/X-ray pulsars observed in the Smal...
Neutron stars are the most compact and magnetic type of stars known in the universe. If a neutron st...
We investigate the evolution of the magnetic fields of isolated pulsars and neutron stars in differe...
Neutron stars (NSs) powered by accretion, which are known as accretion-powered NSs, always are locat...
Aims. The magnetic field of accreting neutron stars determines their overall behavior including the ...
Anomalous X-ray Pulsars (AXPs) belong to a class of neutron stars believed to harbor the strongest m...
The thesis comprises new results on emission phenomena associated with neutron stars (NSs). It descr...
Accreting neutron stars can produce jets only if they are weakly magnetized (B~10^8 G). On the other...
The extreme physical properties of neutron stars make them efficient emitters at all wavelengths of ...
I give an overview of the most important observational tools to study the magnetospheres of accretin...