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Article cité :

Spectral properties of molecular iodine in absorption cells filled to specified saturation pressure

Jan Hrabina, Martin Šarbort, Ouali Acef, et al.
Applied Optics 53 (31) 7435 (2014)
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Laser-induced fluorescence as a tool to verify the reproducibility of iodine-based laser standards: a study of 96 iodine cells

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Absolute frequency measurements for hyperfine structure determination of the R(26) 62-0 transition at 501.7 nm in molecular iodine

Andrei Goncharov, Olivier Lopez, Anne Amy-Klein and Frédéric Du Burck
Metrologia 44 (5) 275 (2007)
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Frequency Measurement of an Ar<tex>$^+$</tex>Laser Stabilized on Narrow Lines of Molecular Iodine at 501.7 nm

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Hyperfine-structure splittings and absorption strengths of molecular-iodine transitions near the trapping frequencies of francium

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Influence of Small Impurities in Absorption Cells of I2 Stabilized Lasers upon Their Frequency

Frank Spieweck
IEEE Transactions on Instrumentation and Measurement IM-34 (2) 246 (1985)
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Frequency Stabilization of Ar+ Lasers at 582 THz Using Expanded Beams in External 127I/2 Cells

Frank Spieweck
IEEE Transactions on Instrumentation and Measurement 29 (4) 361 (1980)
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Comparative analysis of a laser frequency stabilization method using a mobile and a fixed Lorentzian

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Frequency Stabilization of Ar+ Lasers by Saturated Absorption in External 127I2 Cells (at 582 THz)

Frank Spieweck
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