Impact of Rotation on the Structure and Composition of Neutron Stars
Fridolin Weber, Milva Orsaria, Rodrigo Negreiros

TL;DR
This paper reviews how rotation influences the internal structure and composition of neutron stars, highlighting observational methods that can reveal details about their ultra-dense cores and matter states.
Contribution
It provides an overview of the effects of rotation on neutron star structure and discusses observational strategies to probe their core composition.
Findings
Rotation affects neutron star mass and radius.
Observational data can inform about core matter states.
New telescopes will discover many more neutron stars.
Abstract
Depending on mass and rotational frequency, gravity compresses the matter in the core regions of neutron stars to densities that are several times higher than the density of ordinary atomic nuclei. At such huge densities atoms themselves collapse, and atomic nuclei are squeezed so tightly together that new particle states may appear and novel states of matter, foremost quark matter, may be created. This feature makes neutron stars superb astrophysical laboratories for a wide range of physical studies. And with observational data accumulating rapidly from both orbiting and ground based observatories spanning the spectrum from X-rays to radio wavelengths, there has never been a more exiting time than today to study neutron stars. The Hubble Space Telescope and X-ray satellites such as Chandra and XMM-Newton in particular have proven especially valuable. New astrophysical instruments such…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Gamma-ray bursts and supernovae · Geophysics and Gravity Measurements
