The emergence of gravitational wave science: 100 years of development of mathematical theory, detectors, numerical algorithms, and data analysis tools
DOI10.1090/bull/1544zbMath1350.83009arXiv1607.05251OpenAlexW2489810415MaRDI QIDQ2822845
Olivier Sarbach, Manuel Tiglio, Michele Vallisneri, Michael Holst
Publication date: 5 October 2016
Published in: Bulletin of the American Mathematical Society (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1607.05251
general relativitydifferential geometrystatistical inferencesignal processinggravitational wavestatistical significancenumerical analysisdata sciencesynergydetectorsEinstein's predictionLaser Interferometer Gravitational-wave Observatory (LIGO)black-hole binarydark Universedata analysis toolsstellar-mass black holes
Computing methodologies for image processing (68U10) History of mathematics in the 20th century (01A60) Relativistic cosmology (83F05) Black holes (83C57) Numerical methods for wavelets (65T60) History of mathematics in the 21st century (01A61) Applications of statistics to physics (62P35) Applications of differential geometry to physics (53Z05) Research exposition (monographs, survey articles) pertaining to relativity and gravitational theory (83-02) PDEs in connection with relativity and gravitational theory (35Q75) Computational methods for problems pertaining to relativity and gravitational theory (83-08) Gravitational waves (83C35) History of relativity and gravitational theory (83-03) History of astronomy and astrophysics (85-03) Research exposition (monographs, survey articles) pertaining to astronomy and astrophysics (85-02)
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