We derive two different methods to compute the minimal required integration time of a fully coherent follow-up of candidates produced in wide parameter space semi-coherent searches, such as global correlation StackSlide searches using Einstein@Home. We numerically compare these methods in terms of integration duration and computing cost. In a Monte Carlo study we confirm that we can achieve the required detection probability
Continuous gravitational-wave (CW) signals such as emitted by spinning neutron stars are an importan...
We investigate the computational requirements for all-sky, all-frequency searches for gravitational ...
All-sky surveys for isolated continuous gravitational waves present a significant data-analysis chal...
We derive two different methods to compute the minimal required integration time of a fully coherent...
Abstract. We derive two different methods to compute the minimal required integration time of a full...
Fully coherent searches (over realistic ranges of parameter space and year-long observation times) f...
The search for continuous gravitational waves from unknown isolated sources is computationally limit...
Coherent wide parameter-space searches for continuous gravitational waves are typically limited in s...
Leveraging Markov chain Monte Carlo (MCMC) optimization of the F-statistic, we introduce a method fo...
We characterize and present the details of the follow-up method used on the most significant outlier...
This paper presents an efficient numerical sensitivity-estimation method and implementation for cont...
This paper presents an efficient numerical sensitivity-estimation method and implementation for cont...
The search for continuous gravitational waves demands computationally efficient algorithms that can ...
A novel hierarchical semicoherent technique is presented for all-sky surveys for continuous gravitat...
We present a method for coherently combining short data segments from gravitational-wave detectors t...
Continuous gravitational-wave (CW) signals such as emitted by spinning neutron stars are an importan...
We investigate the computational requirements for all-sky, all-frequency searches for gravitational ...
All-sky surveys for isolated continuous gravitational waves present a significant data-analysis chal...
We derive two different methods to compute the minimal required integration time of a fully coherent...
Abstract. We derive two different methods to compute the minimal required integration time of a full...
Fully coherent searches (over realistic ranges of parameter space and year-long observation times) f...
The search for continuous gravitational waves from unknown isolated sources is computationally limit...
Coherent wide parameter-space searches for continuous gravitational waves are typically limited in s...
Leveraging Markov chain Monte Carlo (MCMC) optimization of the F-statistic, we introduce a method fo...
We characterize and present the details of the follow-up method used on the most significant outlier...
This paper presents an efficient numerical sensitivity-estimation method and implementation for cont...
This paper presents an efficient numerical sensitivity-estimation method and implementation for cont...
The search for continuous gravitational waves demands computationally efficient algorithms that can ...
A novel hierarchical semicoherent technique is presented for all-sky surveys for continuous gravitat...
We present a method for coherently combining short data segments from gravitational-wave detectors t...
Continuous gravitational-wave (CW) signals such as emitted by spinning neutron stars are an importan...
We investigate the computational requirements for all-sky, all-frequency searches for gravitational ...
All-sky surveys for isolated continuous gravitational waves present a significant data-analysis chal...