The first observing run of Advanced LIGO spanned 4 months, from September 12, 2015 to January 19, 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 noise transients and artifacts that can reduce the sensitivity of a search for gravitational waves. 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. This dissertation provides an overview of the methods used to characterize noise in the LIGO interferometers and provides examples of su...
The first observing run of Advanced LIGO spanned 4 months, from September 12, 2015 to January 19, 20...
This dissertation describes methods used for characterizing the sources and effects of environmental...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
Gravitational waves are ripples in space-time itself, predicted by Einstein\u27s General theory of r...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
In 2009-2010, the Laser Interferometer Gravitational-Wave Observatory (LIGO) operated together with ...
The first observing run of Advanced LIGO spanned 4 months, from September 12, 2015 to January 19, 20...
This dissertation describes methods used for characterizing the sources and effects of environmental...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
Gravitational waves are ripples in space-time itself, predicted by Einstein\u27s General theory of r...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
In 2009-2010, the Laser Interferometer Gravitational-Wave Observatory (LIGO) operated together with ...
The first observing run of Advanced LIGO spanned 4 months, from September 12, 2015 to January 19, 20...
This dissertation describes methods used for characterizing the sources and effects of environmental...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...