The Neutron-star Interior Composition Explorer is an X-ray astrophysics payload that will be placed on the International Space Station. Its primary science goal is to measure with high accuracy the pulse profiles that arise from the non-uniform thermal surface emission of rotation-powered pulsars. Modeling general relativistic effects on the profiles will lead to measuring the radii of these neutron stars and to constraining their equation of state. Achieving this goal will depend, among other things, on accurate knowledge of the source, sky, and instrument backgrounds. We use here simple analytic estimates to quantify the level at which these backgrounds need to be known in order for the upcoming measurements to provide significant constra...
International audienceWe describe the model of surface emission from a rapidly rotating neutron star...
We present the set of deep Neutron Star Interior Composition Explorer (NICER) X-ray timing observati...
Context. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 and PSR J0348+0432, in ...
We focus on statistical estimation of neutron star parameters, conditional on X-ray data acquired by...
International audienceWe describe the X-ray pulse profile models we use and how we use them to analy...
Modeling the amplitudes and shapes of the X-ray pulsations observed from hot, rotating neutron stars...
The Neutron star Interior Composition Explorer (NICER) is currently observing the x-ray pulse profil...
NICER, the Neutron Star Interior Composition Explorer, uses Pulse Profile Modeling (PPM) to measure ...
One very promising technique for measuring the dense matter Equation of State exploits hotspots that...
“Recycled” millisecond pulsars are a variety of rapidly spinning neutron stars that typically show t...
Precise and reliable measurements of the masses and radii of neutron stars with a variety of masses ...
We present the set of deep Neutron Star Interior Composition Explorer (NICER) X-ray timing observati...
We describe the model of surface emission from a rapidly rotating neutron star that is applied to Ne...
We have simulated the X-ray polarization data that can be obtained with the Imaging X-ray Polarimetr...
One of the primary science goals of the next generation of hard x-ray timing instruments is to deter...
International audienceWe describe the model of surface emission from a rapidly rotating neutron star...
We present the set of deep Neutron Star Interior Composition Explorer (NICER) X-ray timing observati...
Context. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 and PSR J0348+0432, in ...
We focus on statistical estimation of neutron star parameters, conditional on X-ray data acquired by...
International audienceWe describe the X-ray pulse profile models we use and how we use them to analy...
Modeling the amplitudes and shapes of the X-ray pulsations observed from hot, rotating neutron stars...
The Neutron star Interior Composition Explorer (NICER) is currently observing the x-ray pulse profil...
NICER, the Neutron Star Interior Composition Explorer, uses Pulse Profile Modeling (PPM) to measure ...
One very promising technique for measuring the dense matter Equation of State exploits hotspots that...
“Recycled” millisecond pulsars are a variety of rapidly spinning neutron stars that typically show t...
Precise and reliable measurements of the masses and radii of neutron stars with a variety of masses ...
We present the set of deep Neutron Star Interior Composition Explorer (NICER) X-ray timing observati...
We describe the model of surface emission from a rapidly rotating neutron star that is applied to Ne...
We have simulated the X-ray polarization data that can be obtained with the Imaging X-ray Polarimetr...
One of the primary science goals of the next generation of hard x-ray timing instruments is to deter...
International audienceWe describe the model of surface emission from a rapidly rotating neutron star...
We present the set of deep Neutron Star Interior Composition Explorer (NICER) X-ray timing observati...
Context. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 and PSR J0348+0432, in ...