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Martin M. Fejer

Researcher at Stanford University

Publications -  1227
Citations -  104666

Martin M. Fejer is an academic researcher from Stanford University. The author has contributed to research in topics: Lithium niobate & Gravitational wave. The author has an hindex of 123, co-authored 1190 publications receiving 88708 citations. Previous affiliations of Martin M. Fejer include Laser Interferometer Gravitational Wave Observatory & University of Florida.

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Effects of Data Quality Vetoes on a Search for Compact Binary Coalescences in Advanced LIGO's First Observing Run

B. P. Abbott, +954 more
TL;DR: In this paper, the PyCBC pipeline was used to search for gravitational wave signals from compact binary coalescences, and the output of PyCBC was used as a metric for improvement.
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Supplement: The Rate of Binary Black Hole Mergers Inferred from Advanced LIGO Observations Surrounding GW150914

B. P. Abbott, +1003 more
TL;DR: Details of the method and computations are given, including information about the search pipelines, a derivation of the likelihood function for the analysis, a description of the astrophysical search trigger distribution expected from merging BBHs, details on the computational methods, and an analytic method of estimating the detector sensitivity that is calibrated to the measurements.
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A gravitational-wave measurement of the Hubble constant following the second observing run of Advanced LIGO and Virgo

B. P. Abbott, +1186 more
TL;DR: In this paper, the first and second observing runs of the Advanced LIGO and Virgo detector network were used to obtain the first standard-siren measurement of the Hubble constant.
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Apodization of chirped quasi-phasematching devices

TL;DR: In this article, a systematic and optimized approach to grating construction is provided, and different apodization techniques are compared where appropriate, where the poling period is varied smoothly, monotonically, and rapidly at the edges of the device.
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Upper limits on gravitational wave bursts in LIGO's second science run

B. P. Abbott, +467 more
- 15 Sep 2005 - 
TL;DR: In this paper, the authors performed a search for gravitational wave bursts using data from the second science run of the LIGO detectors, using a method based on a wavelet time-frequency decomposition.