In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole merger GW150914 requires a calibrated estimate of the gravitational-wave strain sensed by the detectors. Producing an estimate from each detector's differential arm length control loop readout signals requires applying time domain filters, which are designed from a frequency domain model of the detector's gravitational-wave response. The gravitational-wave response model is determined by the detector's opto-mechanical response and the properties of its feedback control system. The measurements used to validate the model and characterize its uncertainty are derived primarily from a dedicated photon radiation pressure actuator, with cross-checks...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
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 Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
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 Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
The first observing run of Advanced LIGO spanned 4 months, from 12 September 2015 to 19 January 2016...