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Gravitational waves from hot young rapidly rotating neutron stars

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TLDR
In this article, the development of the instability and evolution of the neutron star during the year-long spindown phase is modeled in a simple way, which allows us to predict the general features of the resulting gravitational waveform.
Abstract
Gravitational radiation drives an instability in the r-modes of young rapidly rotating neutron stars. This instability is expected to carry away most of the angular momentum of the star by gravitational radiation emission, leaving a star rotating at about 100 Hz. In this paper we model in a simple way the development of the instability and evolution of the neutron star during the year-long spindown phase. This allows us to predict the general features of the resulting gravitational waveform. We show that a neutron star formed in the Virgo cluster could be detected by the LIGO and VIRGO gravitational wave detectors when they reach their “enhanced” level of sensitivity, with an amplitude signal-to-noise ratio that could be as large as about 8 if near-optimal data analysis techniques are developed. We also analyze the stochastic background of gravitational waves produced by the r-mode radiation from neutron-star formation throughout the universe. Assuming a substantial fraction of neutron stars are born with spin frequencies near their maximum values, this stochastic background is shown to have an energy density of about 10^(−9) of the cosmological closure density, in the range 20 Hz to 1 kHz. This radiation should be detectable by “advanced” LIGO as well.

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Journal ArticleDOI

Quasi-normal modes of stars and Black holes

TL;DR: The successes, as well as the limits, of perturbation theory are presented, and its role in the emerging era of numerical relativity and supercomputers is discussed.
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Presupernova Evolution of Rotating Massive Stars. I. Numerical Method and Evolution of the Internal Stellar Structure

TL;DR: In this paper, the angular momenta for the iron core and overlying material of typical presupernova stars along with their detailed chemical structure are determined, for the first time, the angular momentum distribution in typical pre-main-sequence stars.
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Gravitational wave experiments and early universe cosmology

TL;DR: In this paper, a pedagogical derivation of the various relations that characterize the response of a detector to a stochastic background is given, and the sensitivities of the large interferometers under constructions (LIGO, VIRGO, GEO600, TAMA300, AIGO) or planned (Avdanced LIGO and presently operating resonant bars).
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Physics, Astrophysics and Cosmology with Gravitational Waves

TL;DR: The most likely sources of gravitational waves are studied and the data analysis methods that are used to extract their signals from detector noise are reviewed, and the consequences of gravitational wave detections and observations for physics, astrophysics, and cosmology are considered.
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Birth and Evolution of Isolated Radio Pulsars

TL;DR: In this article, the authors investigated the birth and evolution of radio pulsars in the galaxy and found no evidence for multimodality of the distribution and favor one in which the absolute one-dimensional velocity components are exponentially distributed and with a threedimensional mean velocity of 380 km s-1.
References
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MonographDOI

Black Holes, White Dwarfs, and Neutron Stars

TL;DR: In this paper, the soft file of a book collection of black holes white dwarfs and neutron stars can be downloaded and the book can be found on-line in this site.
Journal ArticleDOI

Black Holes

TL;DR: In this article, the authors review the observational evidence for black holes and briefly discuss some of their properties, and also describe some recent developments involving cosmic censorship and the statistical origin of black hole entropy.
Book

The Detection of Gravitational Waves

TL;DR: Blair et al. as discussed by the authors presented an introduction to Gravitational Waves and methods for their detection, including the sources of gravitational waves, detectors, and sources of internal friction in high Q materials.
Book ChapterDOI

Gravitational Wave Experiments

TL;DR: Gravitational wave antennas have sensitivity many orders greater than procedures for direct measurement of the geometry of spacetime as mentioned in this paper, and they can be used for direct measurements of the geometrical geometry of space.
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