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Subpicometer length measurement using heterodyne laser interferometry and all-digital rf phase meters

dc.contributor.authorHsu, Magnus T L
dc.contributor.authorLittler, Ian C M
dc.contributor.authorShaddock, Daniel A
dc.contributor.authorHerrmann, Jan
dc.contributor.authorWarrington, Richard B
dc.contributor.authorGray, Malcolm B
dc.date.accessioned2016-04-20T06:23:39Z
dc.date.available2016-04-20T06:23:39Z
dc.date.issued2010-12-15
dc.date.updated2016-06-14T08:34:55Z
dc.description.abstractWe present an all-digital phase meter for precision length measurements using heterodyne laser interferometry. Our phase meter has a phase sensitivity of 3 μrad/√Hz at signal frequencies of 1 Hz and above. We test the performance of our phase meter in an optical heterodyne interferometric configuration, using an active Sagnac interferometer test bed that is flexible and low noise. We demonstrate more than 70 dB of laser frequency noise suppression to achieve an optical phase sensitivity of 5 μrad/√Hz and a corresponding displacement sensitivity of 0.5 pm/√Hz at signal frequencies above 10 Hz. In addition, we demonstrate the ability of our phase meter to follow full fringe signals accurately at 100 Hz and to track large signal excursions in excess of 10(5) fringes without cycle slipping. Finally, we demonstrate a cyclic error of ≤1 pm/√Hz, above 10 Hz.
dc.identifier.issn0146-9592en_AU
dc.identifier.urihttp://hdl.handle.net/1885/101071
dc.publisherOptical Society of America
dc.rights© 2010 Optical Society of America
dc.sourceOptics letters
dc.subjectKeywords: Cycle slipping; Cyclic errors; Digital phase meter; Digital RF; Fringe signals; Heterodyne laser interferometry; Interferometric configuration; Large-signals; Laser frequency; Length measurement; Low noise; Optical heterodyne; Optical phase; Phase sensiti
dc.titleSubpicometer length measurement using heterodyne laser interferometry and all-digital rf phase meters
dc.typeJournal article
local.bibliographicCitation.issue24en_AU
local.bibliographicCitation.lastpage4204en_AU
local.bibliographicCitation.startpage4202en_AU
local.contributor.affiliationHsu, Magnus, National Measurement Institute, Australiaen_AU
local.contributor.affiliationLittler, Ian C M, National Measurement Institute, Australiaen_AU
local.contributor.affiliationShaddock, Daniel, College of Physical and Mathematical Sciences, CPMS Research School of Physics and Engineering, Department of Quantum Science, The Australian National Universityen_AU
local.contributor.affiliationHerrmann, Jan, National Measurement Institute, Australiaen_AU
local.contributor.affiliationWarrington, Richard B, National Measurement Institute, Australiaen_AU
local.contributor.affiliationGray, Malcolm B, National Measurement Institute, Australiaen_AU
local.contributor.authoremaildaniel.shaddock@anu.edu.auen_AU
local.contributor.authoruidu9701638en_AU
local.description.notesImported from ARIESen_AU
local.identifier.absfor020604en_AU
local.identifier.ariespublicationf2965xPUB1276en_AU
local.identifier.citationvolume35en_AU
local.identifier.doi10.1364/OL.35.004202en_AU
local.identifier.essn1539-4794en_AU
local.identifier.scopusID2-s2.0-79251511886
local.identifier.thomsonID000285387300040
local.identifier.uidSubmittedByu3488905en_AU
local.publisher.urlhttp://www.osa.org/en-us/home/en_AU
local.type.statusPublished Versionen_AU

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