Laser frequency stabilization using regenerative spectral hole burning
Identifieur interne : 002194 ( Main/Exploration ); précédent : 002193; suivant : 002195Laser frequency stabilization using regenerative spectral hole burning
Auteurs : N. M. Strickland [États-Unis] ; P. B. Sellin [États-Unis] ; Y. Sun [États-Unis] ; J. L. Carlsten [États-Unis] ; R. L. Cone [États-Unis]Source :
- Physical review. B, Condensed matter [ 0163-1829 ] ; 2000-07-15.
Descripteurs français
- Pascal (Inist)
English descriptors
- KwdEn :
Abstract
We demonstrate laser frequency stabilization using a continuously regenerated transient spectral hole in an inhomogeneously broadened resonance of a solid. Regenerative transient holes provide extreme stabilization for time scales appropriate for spectroscopy, signal processing, ranging, and interferometry. Stabilization to 20 Hz on a 10-ms time scale using spectral holes at 793 nm in Tm3+:Y3Al5O12 gives substantial improvement in the reliability of stimulated photon echoes in the same material and enables the observation of a third population storage mechanism for hole burning in Tm3+:Y3Al5O12.
Affiliations:
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Le document en format XML
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<front><div type="abstract" xml:lang="en">We demonstrate laser frequency stabilization using a continuously regenerated transient spectral hole in an inhomogeneously broadened resonance of a solid. Regenerative transient holes provide extreme stabilization for time scales appropriate for spectroscopy, signal processing, ranging, and interferometry. Stabilization to 20 Hz on a 10-ms time scale using spectral holes at 793 nm in Tm<sup>3+</sup>
:Y<sub>3</sub>
Al<sub>5</sub>
O<sub>12</sub>
gives substantial improvement in the reliability of stimulated photon echoes in the same material and enables the observation of a third population storage mechanism for hole burning in Tm<sup>3+</sup>
:Y<sub>3</sub>
Al<sub>5</sub>
O<sub>12</sub>
.</div>
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