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Ripples in Spacetime: Einstein, Gravitational Waves, and the Future of Astronomy

par Govert Schilling

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734367,359 (4.11)3
It has already been called the scientific breakthrough of the century: the detection of gravitational waves. Einstein predicted these tiny ripples in the fabric of spacetime nearly a hundred years ago, but they were never perceived directly until now. Decades in the making, this momentous discovery has given scientists a new understanding of the cataclysmic events that shape the universe and a new confirmation of Einstein's theory of general relativity. Ripples in Spacetime is an engaging account of the international effort to complete Einstein's project, capture his elusive ripples, and launch an era of gravitational-wave astronomy that promises to explain, more vividly than ever before, our universe's structure and origin. The quest for gravitational waves involved years of risky research and many personal and professional struggles that threatened to derail one of the world's largest scientific endeavors. Govert Schilling takes readers to sites where these stories unfolded--including Japan's KAGRA detector, Chile's Atacama Cosmology Telescope, the South Pole's BICEP detectors, and the United States' LIGO labs. He explains the seeming impossibility of developing technologies sensitive enough to detect waves from two colliding black holes in the very distant universe, and describes the astounding precision of the LIGO detectors. Along the way Schilling clarifies concepts such as general relativity, neutron stars, and the big bang using language that readers with little scientific background can grasp.--… (plus d'informations)
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» Voir aussi les 3 mentions

Occasionally repetitive, insufficiently detailed, mostly ignores the scientists in favor of the science, regrettably dated. Still, a good overview of gravitational wave astronomy. ( )
  breic | Jan 10, 2023 |
While an emotion into the math might provide a more thorough understanding I came away with new understanding of gravity and its studies. It odds also Testimony to the ability to build amazingly sensitive instruments. ( )
  waldhaus1 | Mar 1, 2021 |
Libro interessante per capire come si è arrivati alle scoperte di onde gravitazionali. Scrittura fluida, ma l'argomento era troppo incentrato sugli aspetti storici e umani piuttosto che sulla teoria fisica. ( )
  AlessandraEtFabio | May 27, 2019 |
An absorbing account of gravitational waves and related matters, starting from the beginning of general relativity theory, progressing through LIGO's first few detections of waves from black hole mergers, and continuing with future prospects such as space-based instruments for detecting millihertz waves. The first detection of a merger of neutron stars (kilonova) had not yet occurred at the time of writing, but Schilling's description of the significance of that event for "multi-messenger" astronomy is presciently accurate. And no one else's book, as far as I remember, has covered the efforts to detect nanohertz waves by observing pulsars.
  fpagan | Feb 12, 2018 |
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It has already been called the scientific breakthrough of the century: the detection of gravitational waves. Einstein predicted these tiny ripples in the fabric of spacetime nearly a hundred years ago, but they were never perceived directly until now. Decades in the making, this momentous discovery has given scientists a new understanding of the cataclysmic events that shape the universe and a new confirmation of Einstein's theory of general relativity. Ripples in Spacetime is an engaging account of the international effort to complete Einstein's project, capture his elusive ripples, and launch an era of gravitational-wave astronomy that promises to explain, more vividly than ever before, our universe's structure and origin. The quest for gravitational waves involved years of risky research and many personal and professional struggles that threatened to derail one of the world's largest scientific endeavors. Govert Schilling takes readers to sites where these stories unfolded--including Japan's KAGRA detector, Chile's Atacama Cosmology Telescope, the South Pole's BICEP detectors, and the United States' LIGO labs. He explains the seeming impossibility of developing technologies sensitive enough to detect waves from two colliding black holes in the very distant universe, and describes the astounding precision of the LIGO detectors. Along the way Schilling clarifies concepts such as general relativity, neutron stars, and the big bang using language that readers with little scientific background can grasp.--

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