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공공누리This item is licensed Korea Open Government License

dc.contributor.author
B.P. Abbott et al.
dc.contributor.author
강궁원
dc.contributor.author
김정리
dc.contributor.author
김지웅
dc.contributor.author
장행진
dc.contributor.author
조희석
dc.date.accessioned
2019-08-28T07:42:18Z
dc.date.available
2019-08-28T07:42:18Z
dc.date.issued
2018-02-14
dc.identifier.issn
0264-9381
dc.identifier.uri
https://repository.kisti.re.kr/handle/10580/14776
dc.description.abstract
The first observing run of Advanced LIGO spanned 4 months, from 12
September 2015 to 19 January 2016, during which gravitational waves were
directly detected from two binary black hole systems, namely GW150914
and GW151226. Confident detection of gravitational waves requires an
understanding of instrumental transients and artifacts that can reduce the
sensitivity of a search. Studies of the quality of the detector data yield insights
into the cause of instrumental artifacts and data quality vetoes specific to a
search are produced to mitigate the effects of problematic data. In this paper,
the systematic removal of noisy data from analysis time is shown to improve
the sensitivity of searches for compact binary coalescences. The output of
the PyCBC pipeline, which is a python-based code package used to search
for gravitational wave signals from compact binary coalescences, is used as a
metric for improvement. GW150914 was a loud enough signal that removing
noisy data did not improve its significance. However, the removal of data with
excess noise decreased the false alarm rate of GW151226 by more than two
orders of magnitude, from 1 in 770 yr to less than 1 in 186 000 yr.
dc.language
eng
dc.relation.ispartofseries
Classical and Quantum Gravity
dc.title
Effects of data quality vetoes on a search for compact binary coalescences in Advanced LIGO’s first observing run
dc.citation.number
6
dc.citation.startPage
065010
dc.citation.volume
35
dc.subject.keyword
LIGO
dc.subject.keyword
detector characterization
dc.subject.keyword
compact binary coalescences
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