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Solid-state ring laser gyro behaving like its helium-neon counterpart at low rotation rates

  • Sylvain Schwartz
  • , François Gutty
  • , Gilles Feugnet
  • , Éric Loil
  • , Jean Paul Pocholle
  • Thales Research & Technology
  • THALES Aerospace Division

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

23 Citations (Scopus)

Résumé

Nonlinear couplings induced by crystal diffusion and spatial inhomogeneities of the gain have been suppressed over a broad range of angular velocities in a solid-state ring laser gyro by vibrating the gain crystal at 168 kHz and 0.4 μm along the laser cavity axis. This device behaves in the same way as a typical heliumneon ring laser gyro, with a zone of frequency lock-in (or dead band) resulting from the backscattering of light on the cavity mirrors. Furthermore, it is shown that the level of angular random-walk noise in the presence of mechanical dithering depends only on the quality of the cavity mirrors, as is the case with typical helium-neon ring laser gyros.

langue originaleAnglais
Pages (de - à)3884-3886
Nombre de pages3
journalOptics Letters
Volume34
Numéro de publication24
Les DOIs
étatPublié - 15 déc. 2009
Modification externeOui

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