Gravitational wave searches to date have largely focused on non-precessing systems. Including precession effects greatly increases the number of templates to be searched over. This leads to a corresponding increase in the computational cost and can increase the false alarm rate of a realistic search. On the other hand, there might be astrophysical systems that are entirely missed by non-precessing searches. In this paper we consider the problem of constructing a template bank using stochastic methods for neutron star-black hole binaries allowing for precession, but with the restrictions that the total angular momentum of the binary is pointing toward the detector and that the neutron star spin is negligible relative to that of the black hol...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Recent discoveries of gravitational wave (GW) signals from astrophysical compact binary systems of n...
Detection template families (DTFs) are built to capture the essential features of true gravitational...
Gravitational wave searches to date have largely focused on non-precessing systems. Including preces...
A new field of astronomy was opened up on Monday September 14th 2015, when the first detection of a ...
Astrophysical compact binary systems consisting of neutron stars and black holes are an important cl...
The coalescence of pairs of massive black holes are the strongest and most promising sources for LIS...
This is the publisher’s final pdf. The published article is copyrighted by the American Physical Soc...
In the framework of matched filtering theory, which is the most promising method for the detection o...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Efficient multi-dimensional template placement is crucial in computationally intensive matched-filte...
Recent discoveries of gravitational wave (GW) signals from astrophysical compact binary systems of n...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Recent discoveries of gravitational wave (GW) signals from astrophysical compact binary systems of n...
Detection template families (DTFs) are built to capture the essential features of true gravitational...
Gravitational wave searches to date have largely focused on non-precessing systems. Including preces...
A new field of astronomy was opened up on Monday September 14th 2015, when the first detection of a ...
Astrophysical compact binary systems consisting of neutron stars and black holes are an important cl...
The coalescence of pairs of massive black holes are the strongest and most promising sources for LIS...
This is the publisher’s final pdf. The published article is copyrighted by the American Physical Soc...
In the framework of matched filtering theory, which is the most promising method for the detection o...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Efficient multi-dimensional template placement is crucial in computationally intensive matched-filte...
Recent discoveries of gravitational wave (GW) signals from astrophysical compact binary systems of n...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Recent discoveries of gravitational wave (GW) signals from astrophysical compact binary systems of n...
Detection template families (DTFs) are built to capture the essential features of true gravitational...