One of the most exciting prospects for the Laser Interferometer Space Antenna (LISA) is the detection of gravitational waves from the inspirals of stellar-mass compact objects into supermassive black holes. Detection of these sources is an extremely challenging computational problem due to the large parameter space and low amplitude of the signals. However, recent work has suggested that the nearest extreme mass ratio inspiral (EMRI) events will be sufficiently loud that they might be detected using computationally cheap, template-free techniques, such as a time-frequency analysis. In this paper, we examine a particular time-frequency algorithm, the Hierarchical Algorithm for Clusters and Ridges (HACR). This algorithm searches for clusters ...
The planned Laser Interferometer Space Antenna (LISA) is expected to detect gravitational wave signa...
The Laser Interferometer Space Antenna (LISA) will detect the gravitational wave emissions from a va...
The space-based Laser Interferometer Space Antenna (LISA) will be able to observe the gravitational-...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most imp...
Extreme-mass-ratio inspirals (EMRIs) of compact objects with mass m ~ 1–10 Modot into massive black ...
The planned Laser Interferometer Space Antenna (LISA) will detect gravitational wave signals from a ...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most imp...
The inspirals of stellar-mass compact objects into supermassive black holes constitute some of the m...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most exc...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most exc...
The gravitational wave signal from a compact object spiralling toward a massive black hole (MBH) is ...
The planned Laser Interferometer Space Antenna (LISA) is expected to detect gravitational wave signa...
The gravitational wave signal from a compact object inspiralling into a massive black hole (MBH) is ...
The inspirals of compact objects into massive black holes are some of the most exciting of the poten...
The planned Laser Interferometer Space Antenna (LISA) is expected to detect gravitational wave signa...
The Laser Interferometer Space Antenna (LISA) will detect the gravitational wave emissions from a va...
The space-based Laser Interferometer Space Antenna (LISA) will be able to observe the gravitational-...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most imp...
Extreme-mass-ratio inspirals (EMRIs) of compact objects with mass m ~ 1–10 Modot into massive black ...
The planned Laser Interferometer Space Antenna (LISA) will detect gravitational wave signals from a ...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most imp...
The inspirals of stellar-mass compact objects into supermassive black holes constitute some of the m...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most exc...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most exc...
The gravitational wave signal from a compact object spiralling toward a massive black hole (MBH) is ...
The planned Laser Interferometer Space Antenna (LISA) is expected to detect gravitational wave signa...
The gravitational wave signal from a compact object inspiralling into a massive black hole (MBH) is ...
The inspirals of compact objects into massive black holes are some of the most exciting of the poten...
The planned Laser Interferometer Space Antenna (LISA) is expected to detect gravitational wave signa...
The Laser Interferometer Space Antenna (LISA) will detect the gravitational wave emissions from a va...
The space-based Laser Interferometer Space Antenna (LISA) will be able to observe the gravitational-...