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The Final Merger of Massive Black Holes: Recoils, Gravitational Waves, and Electromagnetic SignaturesThe final merger of two massive black holes produces a powerful burst of gravitational radiation, emitting more energy than all the stars in the observable universe combined. The resulting gravitational waveforms will be easily detectable by the space-based LISA out to redshifts z greater than 10, revealing the masses and spins of the black holes to high precision. If the merging black holes have unequal masses, or asymmetric spins, the final black hole that forms can recoil with a velocity exceeding 1000 km/s. And, when the black holes merge in the presence of gas and magnetic fields, various types of electromagnetic signals may also be produced. For more than 30 years, scientists have tried to compute black hole mergers using the methods of numerical relativity. The resulting computer codes have been plagued by instabilities, causing them to crash well before the black holes in the binary could complete even a single orbit. Within the past few years, however, this situation has changed dramatically, with a series of remarkable breakthroughs. This talk will focus on new results that are revealing the dynamics and waveforms of binary black hole mergers, recoil velocities, and the possibility of accompanying electromagnetic outbursts.
Document ID
20110005541
Acquisition Source
Goddard Space Flight Center
Document Type
Conference Paper
Authors
Centrella, Joan M.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Date Acquired
August 25, 2013
Publication Date
October 11, 2010
Subject Category
Astronomy
Meeting Information
Meeting: Accretion and Outflow in Black Hole Systems/INAF, INAF/OAR, ASI/DSC, INAF/IASF
Location: Kathmandu
Country: Nepal
Start Date: October 11, 2010
End Date: October 15, 2010
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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