Noise Line Identification in LIGO S6 and Virgo VSR2
arXiv:1109.0330 · doi:10.1088/1742-6596/243/1/012010
Abstract
An important goal for LIGO (the Laser Interferometer Gravitational-Wave Observatory) and Virgo is to find periodic sources of gravitational waves. The LIGO and Virgo detectors are sensitive to a variety of noise of non-astrophysical origin, such as instrumental artifacts and environmental disturbances. These artifacts make it difficult to know when a signal is due to a gravitational wave or noise. A continuous wave search algorithm, Fscan, and the calculation of the coherence between the gravitational wave channels and auxiliary channels has been developed to identify the source of noise lines. The programs analyze data from the gravitational wave channels as well as environmental sensors, searching for significant lines that appear in coincidence (using various thresholds and frequency windows) in the gravitational wave channel as well the environmental monitors. By this method, the source of powerful signals at specific frequencies in the gravitational wave channel caused by noise can be determined. Examples from LIGO's sixth science run, S6, and Virgo' second scientific run, VSR2, are presented.
9 pages, 4 figures, 14th Gravitational Wave Data Analysis Workshop (Rome, Italy)
Cited by in corpus (10)
- Characterization of the LIGO detectors during their sixth science run
- LIGO Detector Characterization in the Second and Third Observing Runs
- Identification and mitigation of narrow spectral artifacts that degrade searches for persistent gravitational waves in the first two observing runs of Advanced LIGO
- The characterization of Virgo data and its impact on gravitational-wave searches
- All-sky Search for Periodic Gravitational Waves in the Full S5 LIGO Data
- Robust semicoherent searches for continuous gravitational waves with noise and signal models including hours to days long transients
- All-sky search for long-duration gravitational-wave transients in the second Advanced LIGO observing run
- SOAP: A generalised application of the Viterbi algorithm to searches for continuous gravitational-wave signals
- Instrumental vetoes for transient gravitational-wave triggers using noise-coupling models: The bilinear-coupling veto
- Identification of long-duration noise transients in LIGO and Virgo