Using the method proposed in a previous paper, we calculate pulsar braking indices in the models with torque contributions from both inner and outer accelerating regions, assuming that the interaction between them is negligible. We suggest that it is likely that the inverse Compton scattering induced polar vacuum gap and the outer gap coexist in the pulsar magnetosphere. We include the new near threshold vacuum gap models with curvature-radiation and inverse Compton scattering induced cascades, respectively; and find that these models can well reproduce the measured values of the braking indices.Astronomy & AstrophysicsSCI(E)EI16ARTICLE2641-64540
Im Rahmen eines selbst-konsistenten Outer-Gap-Modells der Pulsar-Magnetosphäre wurde die elektromagn...
A three-dimensional pulsar magnetosphere model is used to study the geometry of outer magnetospheric...
The inverse Compton scattering (ICS) model of the pulsars are reviewed, including the inner gap stru...
Using the method proposed in a previous paper, we calculate pulsar braking indices in the models wit...
As a result of observational difficulties, braking indices of only six rotation-powered pulsars are ...
Pulsar braking torques due to magnetodipole radiation and to unipolar generator are considered, whic...
In the coming era of multi-messenger astrophysics, pulsars might be one of the most possible electro...
The process of linear acceleration emission in the vacuum gaps close to the surface of a pulsar is c...
The analysis of X-ray observations suggest an ultrastrong ($B\gtrsim 10^{14} \,{\rm G}$) surface mag...
In this paper we revisit the radio pulsar death line problem within the framework of curvature radia...
We discuss outer gap closure mechanism in the trans-field direction with the magnetic pair-creation ...
The classical vacuum gap model of Ruderman & Sutherland, in which spark-associated subbeams of subpu...
Pulsed emission from gamma-ray pulsars originates inside the magnetosphere, from radiation by charge...
We study non-thermal emission process in pulsar magnetospheric accelerator (outer gap). We discuss e...
A two-dimensional electrodynamic model is used to study particle acceleration and non-thermal emissi...
Im Rahmen eines selbst-konsistenten Outer-Gap-Modells der Pulsar-Magnetosphäre wurde die elektromagn...
A three-dimensional pulsar magnetosphere model is used to study the geometry of outer magnetospheric...
The inverse Compton scattering (ICS) model of the pulsars are reviewed, including the inner gap stru...
Using the method proposed in a previous paper, we calculate pulsar braking indices in the models wit...
As a result of observational difficulties, braking indices of only six rotation-powered pulsars are ...
Pulsar braking torques due to magnetodipole radiation and to unipolar generator are considered, whic...
In the coming era of multi-messenger astrophysics, pulsars might be one of the most possible electro...
The process of linear acceleration emission in the vacuum gaps close to the surface of a pulsar is c...
The analysis of X-ray observations suggest an ultrastrong ($B\gtrsim 10^{14} \,{\rm G}$) surface mag...
In this paper we revisit the radio pulsar death line problem within the framework of curvature radia...
We discuss outer gap closure mechanism in the trans-field direction with the magnetic pair-creation ...
The classical vacuum gap model of Ruderman & Sutherland, in which spark-associated subbeams of subpu...
Pulsed emission from gamma-ray pulsars originates inside the magnetosphere, from radiation by charge...
We study non-thermal emission process in pulsar magnetospheric accelerator (outer gap). We discuss e...
A two-dimensional electrodynamic model is used to study particle acceleration and non-thermal emissi...
Im Rahmen eines selbst-konsistenten Outer-Gap-Modells der Pulsar-Magnetosphäre wurde die elektromagn...
A three-dimensional pulsar magnetosphere model is used to study the geometry of outer magnetospheric...
The inverse Compton scattering (ICS) model of the pulsars are reviewed, including the inner gap stru...