We have demonstrated a compact, robust device for simultaneous absolute frequency stabilization of three diode lasers whose carrier frequencies can be chosen freely relative to the reference. A rigid ULE multicavity block is employed, and, for each laser, the sideband locking technique is applied. A small lock error, computer control of frequency offset, wide range of frequency offset, simple construction, and robust operation are the useful features of the system. One concrete application is as a stabilization unit for the cooling and trapping lasers of a neutral-atom lattice clock. The device significantly supports and improves the clock's operation. The laser with the most stringent requirements imposed by this application is stabilized to a line width of 70 Hz, and a residual frequency drift less than 0.5 Hz/s. The carrier optical frequency can be tuned over 350 MHz while in lock.

Robust frequency stabilization of multiple spectroscopy lasers with large and tunable offset frequencies / A. Nevsky;S. Alighanbari;Q.-F. Chen;I. Ernsting;S. Vasilyev;S. Schiller;G. Barwood;P. Gill;N. Poli;G. M. Tino. - In: OPTICS LETTERS. - ISSN 0146-9592. - STAMPA. - 38:(2013), pp. 4903-4906. [10.1364/OL.38.004903]

Robust frequency stabilization of multiple spectroscopy lasers with large and tunable offset frequencies

POLI, NICOLA;TINO, GUGLIELMO MARIA
2013

Abstract

We have demonstrated a compact, robust device for simultaneous absolute frequency stabilization of three diode lasers whose carrier frequencies can be chosen freely relative to the reference. A rigid ULE multicavity block is employed, and, for each laser, the sideband locking technique is applied. A small lock error, computer control of frequency offset, wide range of frequency offset, simple construction, and robust operation are the useful features of the system. One concrete application is as a stabilization unit for the cooling and trapping lasers of a neutral-atom lattice clock. The device significantly supports and improves the clock's operation. The laser with the most stringent requirements imposed by this application is stabilized to a line width of 70 Hz, and a residual frequency drift less than 0.5 Hz/s. The carrier optical frequency can be tuned over 350 MHz while in lock.
2013
38
4903
4906
A. Nevsky;S. Alighanbari;Q.-F. Chen;I. Ernsting;S. Vasilyev;S. Schiller;G. Barwood;P. Gill;N. Poli;G. M. Tino
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/866035
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