All-sky searches for continuous gravitational waves are generally model dependent and computationally costly to run. By contrast, SOAP is a model-agnostic search that rapidly returns candidate signal tracks in the time-frequency plane. In this work, we extend the SOAP search to return broad Bayesian posteriors on the astrophysical parameters of a specific signal model. These constraints drastically reduce the volume of parameter space that any follow-up search needs to explore, so increasing the speed at which candidates can be identified and confirmed. Our method uses a machine learning technique, specifically a conditional variational auto-encoder, and delivers a rapid estimation of the posterior distribution of the four Doppler parameter...
All-sky and wide parameter space searches for continuous gravitational waves are generally template-...
Following up large numbers of candidates in continuous gravitational wave searches presents a challe...
Rapidly rotating neutron stars are promising sources of continuous gravitational wave radiation for ...
All-sky searches for continuous gravitational waves are generally model dependent and computationall...
The field of gravitational wave astronomy is still in its early stages, with published detections of...
Many continuous gravitational wave searches are affected by instrumental spectral lines that could b...
With the improving sensitivity of the global network of gravitational-wave detectors, we expect to o...
Leveraging Markov chain Monte Carlo (MCMC) optimization of the F-statistic, we introduce a method fo...
This thesis concerns the analysis of continuous gravitational waves from neutron stars with non-axis...
Wide parameter space searches for long lived continuous gravitational wave signals are computational...
Continuous gravitational-wave (CW) signals such as emitted by spinning neutron stars are an importan...
We investigate the Bayesian framework for detection of continuous gravitational waves (GWs) in the c...
Fully coherent searches (over realistic ranges of parameter space and year-long observation times) f...
We introduce a high-performance implementation of a loosely coherent statistic sensitive to signals ...
This article introduces varaha, an open-source, fast, non-Markovian sampler for estimating gravitati...
All-sky and wide parameter space searches for continuous gravitational waves are generally template-...
Following up large numbers of candidates in continuous gravitational wave searches presents a challe...
Rapidly rotating neutron stars are promising sources of continuous gravitational wave radiation for ...
All-sky searches for continuous gravitational waves are generally model dependent and computationall...
The field of gravitational wave astronomy is still in its early stages, with published detections of...
Many continuous gravitational wave searches are affected by instrumental spectral lines that could b...
With the improving sensitivity of the global network of gravitational-wave detectors, we expect to o...
Leveraging Markov chain Monte Carlo (MCMC) optimization of the F-statistic, we introduce a method fo...
This thesis concerns the analysis of continuous gravitational waves from neutron stars with non-axis...
Wide parameter space searches for long lived continuous gravitational wave signals are computational...
Continuous gravitational-wave (CW) signals such as emitted by spinning neutron stars are an importan...
We investigate the Bayesian framework for detection of continuous gravitational waves (GWs) in the c...
Fully coherent searches (over realistic ranges of parameter space and year-long observation times) f...
We introduce a high-performance implementation of a loosely coherent statistic sensitive to signals ...
This article introduces varaha, an open-source, fast, non-Markovian sampler for estimating gravitati...
All-sky and wide parameter space searches for continuous gravitational waves are generally template-...
Following up large numbers of candidates in continuous gravitational wave searches presents a challe...
Rapidly rotating neutron stars are promising sources of continuous gravitational wave radiation for ...