2012
DOI: 10.1088/0957-0233/23/12/125001
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Absolute measurement of gauge block without wringing using tandem low-coherence interferometry

Abstract: A novel method of gauge block measurement without wringing onto a glass platen is proposed. By using tandem low-coherence interferometry to perform remote measurements, wringing is rendered unnecessary. To measure its length, a gauge block for measurement without wringing is set several millimeters above a glass platen that is positioned on a triangle interferometer such that the distances between the surfaces of the block and the reflection surface of the platen can be measured from opposite directions. By us… Show more

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Cited by 10 publications
(6 citation statements)
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“…Taking a He-Ne laser interferometer as a reference length standard, an internal distance of up to 100 mm was measured with an uncertainty of 178 nm. This is also available for gauge block interferometry [143].…”
Section: Low-coherence Interferometrymentioning
confidence: 99%
“…Taking a He-Ne laser interferometer as a reference length standard, an internal distance of up to 100 mm was measured with an uncertainty of 178 nm. This is also available for gauge block interferometry [143].…”
Section: Low-coherence Interferometrymentioning
confidence: 99%
“…To precisely measure the optical path lengths L OPL1 and L OPL2 , we considered several noncontact length measuring methods for our system [12][13][14][15][16][17][18] and chose the tandem lowcoherence interferometric method because it can determine positioning at 10-30 nm level [12,13]. To perform tandem low-coherence interferometry, reference and measurement interferometers were connected by a single-mode optical fiber.…”
Section: Measurement Science and Technologymentioning
confidence: 99%
“…Therefore, the reference interferometer, which functions as an optical path compensation interferometer, was set up to generate low-coherence interference fringes. The reference and measurement interferometers can be separated in the range from several metres up to several kilometres [12,13,19], thus allowing remote measurement by the tandem low-coherence interferometer.…”
Section: Measurement Science and Technologymentioning
confidence: 99%
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“…Abdelaty [29] has shown for a similar set-up that there are challenges, especially as the phase correction has to be applied twice and its uncertainty contributes accordingly, and additional mirrors and beam splitters of high quality are needed. Another approach was taken by Winarno et al [30], who combine a double-sided interferometer in a triangle configuration with a displacement measurement that can be carried out remotely. In this case, the uncertainty of traditional gauge block interferometry has not yet been achieved.…”
Section: Alternative Approachesmentioning
confidence: 99%