File:Gravitational wave interferometer animation.ogg

Original file(Ogg Theora video file, length 20 s, 868 × 762 pixels, 1.01 Mbps, file size: 2.4 MB)

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This animation depicts the basic principles of gravitational waves detection using an interferometer.

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Description
English: This animation depicts the basic principles of gravitational waves detection using an interferometer. Light from the laser is split into the two arms and recombined after bouncing of the mirrors. The phase difference creates constructive or destructive interference, determining how much light reaches the photodiode. When gravitational waves (emitted here by a binary black hole) reach the interferometer, the mirrors move, modulating the phase and thus the light reaching the photodiode, allowing to reconstruct the signal. The amplitude of the mirrors displacements is vastly exaggerated for the animation purpose, as is the phase change. The optical components were taken from the ComponentLibrary vector graphics library designed by Alexander Franzen (http://www.gwoptics.org/ComponentLibrary). The waveform was generated with the SEOBNRv4 model, using the PyCBC software ; the masses for the black holes are both 80 solar masses.
Date
Source Own work
Author Thuiop

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I, the copyright holder of this work, hereby publish it under the following license:
w:en:Creative Commons
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File history

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Date/TimeThumbnailDimensionsUserComment
current12:06, 18 February 202420 s, 868 × 762 (2.4 MB)Thuiop (talk | contribs)Correcting formats
11:57, 18 February 202423 s, 1,920 × 1,080 (5.89 MB)Thuiop (talk | contribs)Uploaded own work with UploadWizard

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VP9 720P 256 kbps Completed 12:07, 18 February 2024 15 s
Streaming 720p (VP9) 256 kbps Completed 05:24, 27 March 2024 1.0 s
VP9 480P 119 kbps Completed 12:47, 18 February 2024 9.0 s
Streaming 480p (VP9) 119 kbps Completed 05:24, 27 March 2024 0.0 s
VP9 360P 67 kbps Completed 12:47, 18 February 2024 6.0 s
Streaming 360p (VP9) 68 kbps Completed 05:24, 27 March 2024 1.0 s
VP9 240P 37 kbps Completed 12:47, 18 February 2024 5.0 s
Streaming 240p (VP9) 37 kbps Completed 05:24, 27 March 2024 1.0 s
WebM 360P 63 kbps Completed 12:47, 18 February 2024 4.0 s
Streaming 144p (MJPEG) 1.05 Mbps Completed 05:24, 27 March 2024 2.0 s

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