Two identical diode-pumped bulk Er-Yb:glass lasers, operating at 1534-nm wavelength, have been independently locked to the P(15) rovibrational line of the acetylene molecule by the FM sideband technique. Measurements of the beat note between the two lasers show a long-term frequency stability of 170 kHz over a 1-h period and a short-term laser linewidth below 50 kHz over 1 ms. The Allan standard deviation of the beat frequency was measured yielding values below 10-10 for integration times between 10 ms and 1 s, reaching the 4×10-11 level at 0.1 s. © 1998 American Institute of Physics.

Absolute frequency stabilization of two diode-pumped Er-Yb:glass lasers to the acetylene P(15) line at 1534 nm / Svelto, C.; Bava, E.; Taccheo, S.; Laporta, P.. - In: APPLIED PHYSICS LETTERS. - ISSN 0003-6951. - STAMPA. - 73:13(1998), pp. 1778-1780. [10.1063/1.122279]

Absolute frequency stabilization of two diode-pumped Er-Yb:glass lasers to the acetylene P(15) line at 1534 nm

Bava E.;Taccheo S.;
1998

Abstract

Two identical diode-pumped bulk Er-Yb:glass lasers, operating at 1534-nm wavelength, have been independently locked to the P(15) rovibrational line of the acetylene molecule by the FM sideband technique. Measurements of the beat note between the two lasers show a long-term frequency stability of 170 kHz over a 1-h period and a short-term laser linewidth below 50 kHz over 1 ms. The Allan standard deviation of the beat frequency was measured yielding values below 10-10 for integration times between 10 ms and 1 s, reaching the 4×10-11 level at 0.1 s. © 1998 American Institute of Physics.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2867170