The era of gravitational-wave astronomy has started with the discovery of the binary black hole coalescences (BBH) GW150914 and GW151226 by the LIGO instruments. These systems allowed for the first direct measurement of masses and spins of black holes. The component masses in each of the systems have been estimated with uncertainties of over 10\%, with only weak constraints on the spin magnitude and orientation. In this paper we show how these uncertainties will be typical for this type of source when using advanced detectors. Focusing in particular on heavy BBH of masses similar to GW150914, we find that typical uncertainties in the estimation of the source-frame component masses will be around 40\%. We also find that for most events the m...
The mass and spin properties of binary black holes (BBHs) inferred from their gravitational-wave sig...
Inspiraling binary neutron stars (BNSs) are expected to be one of the most significant sources of gr...
This paper presents updated estimates of source parameters for GW150914, a binary black-hole coalesc...
The era of gravitational-wave astronomy started with the discovery of the binary black hole coalesce...
Compact binary coalescences are the most promising sources of gravitational waves (GWs) for ground-b...
We characterize the expected statistical errors with which the parameters of black-hole binaries ca...
Parameter estimation for binary black holes with networks of third-generation gravitational-waveaThe...
Gravitational-wave (GW) signals from coalescing compact binaries carry enormous information about th...
Gravitational waves from binary black holes have the potential to yield information on both of the i...
The coalescence of massive black holes generates gravitational waves (GWs) that will be measurable b...
The observation of gravitational-wave signals from merging black hole binaries enables direct measur...
(Abridged): We assess the statistical errors in estimating the parameters of non-spinning black-hole...
Inspiraling binary neutron stars (BNSs) are expected to be one of the most significant sources of gr...
Characterizing the properties of black holes is one of the most important science objectives for gra...
Black hole spin will have a large impact on searches for gravitational waves with advanced detectors...
The mass and spin properties of binary black holes (BBHs) inferred from their gravitational-wave sig...
Inspiraling binary neutron stars (BNSs) are expected to be one of the most significant sources of gr...
This paper presents updated estimates of source parameters for GW150914, a binary black-hole coalesc...
The era of gravitational-wave astronomy started with the discovery of the binary black hole coalesce...
Compact binary coalescences are the most promising sources of gravitational waves (GWs) for ground-b...
We characterize the expected statistical errors with which the parameters of black-hole binaries ca...
Parameter estimation for binary black holes with networks of third-generation gravitational-waveaThe...
Gravitational-wave (GW) signals from coalescing compact binaries carry enormous information about th...
Gravitational waves from binary black holes have the potential to yield information on both of the i...
The coalescence of massive black holes generates gravitational waves (GWs) that will be measurable b...
The observation of gravitational-wave signals from merging black hole binaries enables direct measur...
(Abridged): We assess the statistical errors in estimating the parameters of non-spinning black-hole...
Inspiraling binary neutron stars (BNSs) are expected to be one of the most significant sources of gr...
Characterizing the properties of black holes is one of the most important science objectives for gra...
Black hole spin will have a large impact on searches for gravitational waves with advanced detectors...
The mass and spin properties of binary black holes (BBHs) inferred from their gravitational-wave sig...
Inspiraling binary neutron stars (BNSs) are expected to be one of the most significant sources of gr...
This paper presents updated estimates of source parameters for GW150914, a binary black-hole coalesc...