author_facet Rossi, A.
Biancalana, V.
Mai, B.
Tomassetti, L.
Rossi, A.
Biancalana, V.
Mai, B.
Tomassetti, L.
author Rossi, A.
Biancalana, V.
Mai, B.
Tomassetti, L.
spellingShingle Rossi, A.
Biancalana, V.
Mai, B.
Tomassetti, L.
Review of Scientific Instruments
Long-term drift laser frequency stabilization using purely optical reference
Instrumentation
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spelling Rossi, A. Biancalana, V. Mai, B. Tomassetti, L. 0034-6748 1089-7623 AIP Publishing Instrumentation http://dx.doi.org/10.1063/1.1487895 <jats:p>We describe an apparatus for the stabilization of laser frequencies that prevents long-term frequency drifts. A Fabry–Perot interferometer is thermostated by referencing it to a stabilized He–Ne laser (master), and its length is scanned over more than one free spectral range allowing the analysis of one or more lines generated by other (slave) lasers. A digital acquisition system makes the detection of the position of all the laser peaks possible, thus producing both feedback for the thermostat and the error signal used for stabilizing the slave lasers. This technique also allows for easy, referenced scanning of the slave laser frequencies over range of several hundred MHz, with a precision of the order of a few MHz. This kind of stabilization system is particularly useful when no atomic or molecular reference lines are available, as in the case of rare or short lived radioactive species.</jats:p> Long-term drift laser frequency stabilization using purely optical reference Review of Scientific Instruments
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title Long-term drift laser frequency stabilization using purely optical reference
title_unstemmed Long-term drift laser frequency stabilization using purely optical reference
title_full Long-term drift laser frequency stabilization using purely optical reference
title_fullStr Long-term drift laser frequency stabilization using purely optical reference
title_full_unstemmed Long-term drift laser frequency stabilization using purely optical reference
title_short Long-term drift laser frequency stabilization using purely optical reference
title_sort long-term drift laser frequency stabilization using purely optical reference
topic Instrumentation
url http://dx.doi.org/10.1063/1.1487895
publishDate 2002
physical 2544-2548
description <jats:p>We describe an apparatus for the stabilization of laser frequencies that prevents long-term frequency drifts. A Fabry–Perot interferometer is thermostated by referencing it to a stabilized He–Ne laser (master), and its length is scanned over more than one free spectral range allowing the analysis of one or more lines generated by other (slave) lasers. A digital acquisition system makes the detection of the position of all the laser peaks possible, thus producing both feedback for the thermostat and the error signal used for stabilizing the slave lasers. This technique also allows for easy, referenced scanning of the slave laser frequencies over range of several hundred MHz, with a precision of the order of a few MHz. This kind of stabilization system is particularly useful when no atomic or molecular reference lines are available, as in the case of rare or short lived radioactive species.</jats:p>
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author Rossi, A., Biancalana, V., Mai, B., Tomassetti, L.
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description <jats:p>We describe an apparatus for the stabilization of laser frequencies that prevents long-term frequency drifts. A Fabry–Perot interferometer is thermostated by referencing it to a stabilized He–Ne laser (master), and its length is scanned over more than one free spectral range allowing the analysis of one or more lines generated by other (slave) lasers. A digital acquisition system makes the detection of the position of all the laser peaks possible, thus producing both feedback for the thermostat and the error signal used for stabilizing the slave lasers. This technique also allows for easy, referenced scanning of the slave laser frequencies over range of several hundred MHz, with a precision of the order of a few MHz. This kind of stabilization system is particularly useful when no atomic or molecular reference lines are available, as in the case of rare or short lived radioactive species.</jats:p>
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spelling Rossi, A. Biancalana, V. Mai, B. Tomassetti, L. 0034-6748 1089-7623 AIP Publishing Instrumentation http://dx.doi.org/10.1063/1.1487895 <jats:p>We describe an apparatus for the stabilization of laser frequencies that prevents long-term frequency drifts. A Fabry–Perot interferometer is thermostated by referencing it to a stabilized He–Ne laser (master), and its length is scanned over more than one free spectral range allowing the analysis of one or more lines generated by other (slave) lasers. A digital acquisition system makes the detection of the position of all the laser peaks possible, thus producing both feedback for the thermostat and the error signal used for stabilizing the slave lasers. This technique also allows for easy, referenced scanning of the slave laser frequencies over range of several hundred MHz, with a precision of the order of a few MHz. This kind of stabilization system is particularly useful when no atomic or molecular reference lines are available, as in the case of rare or short lived radioactive species.</jats:p> Long-term drift laser frequency stabilization using purely optical reference Review of Scientific Instruments
spellingShingle Rossi, A., Biancalana, V., Mai, B., Tomassetti, L., Review of Scientific Instruments, Long-term drift laser frequency stabilization using purely optical reference, Instrumentation
title Long-term drift laser frequency stabilization using purely optical reference
title_full Long-term drift laser frequency stabilization using purely optical reference
title_fullStr Long-term drift laser frequency stabilization using purely optical reference
title_full_unstemmed Long-term drift laser frequency stabilization using purely optical reference
title_short Long-term drift laser frequency stabilization using purely optical reference
title_sort long-term drift laser frequency stabilization using purely optical reference
title_unstemmed Long-term drift laser frequency stabilization using purely optical reference
topic Instrumentation
url http://dx.doi.org/10.1063/1.1487895