Coincidence and coherent data analysis methods for gravitational wave bursts in a network of interferometric detectors
arXiv:gr-qc/0307100 · doi:10.1103/PhysRevD.68.102001
Abstract
Network data analysis methods are the only way to properly separate real gravitational wave (GW) transient events from detector noise. They can be divided into two generic classes: the coincidence method and the coherent analysis. The former uses lists of selected events provided by each interferometer belonging to the network and tries to correlate them in time to identify a physical signal. Instead of this binary treatment of detector outputs (signal present or absent), the latter method involves first the merging of the interferometer data and looks for a common pattern, consistent with an assumed GW waveform and a given source location in the sky. The thresholds are only applied later, to validate or not the hypothesis made. As coherent algorithms use a more complete information than coincidence methods, they are expected to provide better detection performances, but at a higher computational cost. An efficient filter must yield a good compromise between a low false alarm rate (hence triggering on data at a manageable rate) and a high detection efficiency. Therefore, the comparison of the two approaches is achieved using so-called Receiving Operating Characteristics (ROC), giving the relationship between the false alarm rate and the detection efficiency for a given method. This paper investigates this question via Monte-Carlo simulations, using the network model developed in a previous article.
Spelling mistake corrected in one author's name
References in corpus (19)
- Data analysis of gravitational-wave signals from spinning neutron stars. I. The signal and its detection
- Relativistic simulations of rotational core collapse. II. Collapse dynamics and gravitational radiation
- An excess power statistic for detection of burst sources of gravitational radiation
- Relativistic simulations of rotational core collapse. I. Methods, initial models, and code tests
- A data-analysis strategy for detecting gravitational-wave signals from inspiraling compact binaries with a network of laser-interferometric detectors
- Aperture synthesis for gravitational-wave data analysis: Deterministic Sources
- Time-frequency detection of Gravitational Waves
- Detection of gravitational wave bursts by interferometric detectors
- An efficient filter for detecting gravitational wave bursts in interferometric detectors
- Study of the coincidences between the gravitational wave detectors EXPLORER and NAUTILUS in 2001
- Optimal detection of burst events in gravitational wave interferometric observatories
- A Robust Test for Detecting Non-Stationarity in Data from Gravitational Wave Detectors
- Comparison of filters for detecting gravitational wave bursts in interferometric detectors
- Detection of gravitational waves from inspiraling compact binaries using a network of interferometric detectors
- Detection in coincidence of gravitational wave bursts with a network of interferometric detectors (I): Geometric acceptance and timing
- Study of Coincidences between Resonant Gravitational Wave Detectors
- A power filter for the detection of burst sources of gravitational radiation in interferometric detectors
- Network sensitivity to geographical configuration
- Computational cost for detecting inspiraling binaries using a network of laser interferometric detectors
Cited by in corpus (25)
- Physics, Astrophysics and Cosmology with Gravitational Waves
- Networks of gravitational wave detectors and three figures of merit
- Coherent method for detection of gravitational wave bursts
- Constraint Likelihood analysis for a network of gravitational wave detectors
- Coherent network analysis technique for discriminating gravitational-wave bursts from instrumental noise
- Gravitational-Wave Data Analysis. Formalism and Sample Applications: The Gaussian Case
- The characterization of Virgo data and its impact on gravitational-wave searches
- A geometric algorithm for efficient coincident detection of gravitational waves
- Reconstruction of source location in a network of gravitational wave interferometric detectors
- Bayesian detection of unmodeled bursts of gravitational waves
- Neural Network Aided Glitch-Burst Discrimination and Glitch Classification
- Detection of a close supernova gravitational wave burst in a network of interferometers, neutrino and optical detectors
- Observation results by the TAMA300 detector on gravitational wave bursts from stellar-core collapses
- Astrophysically Triggered Searches for Gravitational Waves: Status and Prospects
- Best network chirplet-chain: Near-optimal coherent detection of unmodeled gravitation wave chirps with a network of detectors
- A comparison of methods for gravitational wave burst searches from LIGO and Virgo
- Modeling the Impulsive Noise Component and its Effect on the Operation of a Simple Coherent Network Algorithm for Unmodeled Gravitational Wave Bursts Detection
- A burst search for gravitational waves from binary black holes
- Plans for the LIGO-TAMA Joint Search for Gravitational Wave Bursts
- Detecting gravitational waves from inspiraling binaries with a network of geographically separated detectors: coherent versus coincident strategies
- Application of the Probability Event Horizon filter to constrain the local rate density of binary black hole inspirals with Advanced LIGO
- Compressed Sensing for Time-Frequency Gravitational Wave Data Analysis
- Sparse sky grid for the coherent detection of gravitational wave bursts
- Preparations for detecting and characterizing gravitational-wave signals from binary black hole coalescences
- Coherent versus coincidence detection of gravitational wave signals from compact inspiraling binaries