Handbook of Gravitational Wave Astronomy

Handbook of Gravitational Wave Astronomy
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Artikel-Nr:
9789811643057
Veröffentl:
2022
Einband:
HC runder Rücken kaschiert~2:BB
Erscheinungsdatum:
03.07.2022
Seiten:
1960
Autor:
Cosimo Bambi
Gewicht:
3582 g
Format:
241x160x109 mm
Sprache:
Englisch
Beschreibung:

Cosimo Bambi received his laurea from Florence University (Florence, Italy) in 2003 and his doctoral degree from Ferrara University (Ferrara, Italy) in 2007. He worked as a postdoctoral research scholar at Wayne State University (Detroit, Michigan) in 2007¿2008, at IPMU at the University of Tokyo (Kashiwa, Japan) in
This handbook provides an updated comprehensive description of gravitational wave astronomy. In the first part, it reviews gravitational wave experiments, from ground and space based laser interferometers to pulsar timing arrays and indirect detection from the cosmic microwave background. In the second part, it discusses a number of astrophysical and cosmological gravitational wave sources, including black holes, neutron stars, possible more exotic objects, and sources in the early Universe. The third part of the book reviews the methods to calculate gravitational waveforms. The fourth and last part of the book covers techniques employed in gravitational wave astronomy data analysis. This book represents both a valuable resource for graduate students and an important reference for researchers in gravitational wave astronomy.
Title is also available as part of a set: Handbook of Gravitational Wave Astronomy (978-981-16-4307-1)
Introduction to gravitational wave astronomy.- Gravitational wave detectors.- Gravitational wave sources.- Gravitational wave modeling.- Data analysis techniques.- Testing the nature of dark compact objects with gravitational waves.- Advances in Machine and Deep Learning for Modeling and Real-time Detection of Multi-Messenger Sources.- Measuring cosmological parameters with gravitational waves.- Detection Landscape in the Deci-Hertz Gravitational-Wave Spectrum.- Machine learning for characterization of gravitational wave data.

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