Paper
30 September 1998 Interferometric refractometer with a variable-length vacuum cylinder
Antti Lassila, P. Tallgren, Kari Riski, Erkki Ikonen
Author Affiliations +
Abstract
A new design for a variable length vacuum path air refractometer is developed. The device has some advantages as compared with traditional gas refractometers. It measures directly the refractive index of laboratory air. Hence it is not necessary to move air to or form any separate cavity. The optical construction of the device is simple. The device utilizes two Michelson type interferometers. One interferometer has fixed mechanical lengths in both arms. The optical length of one arm can be altered by changing the proportion between air and vacuum lengths of the beam path. This is realized by a variable length vacuum cylinder. The other interferometer measures the displacement of the vacuum window of the cylinder. The interference signals caused by the change of optical path change and by displacement of the vacuum window are digitalized and analyzed to give the refractive index of ambient air. The Abbe error is eliminated by using a glass corner cube with hole through the center that allows symmetric alignment of the beams of the two interferometers. Difference of refractive index values measured by the refractometer and calculated with updated Edlen's formula form experimental data was 1.2 X 10-8 when standard deviation of the difference was 4 X 10-8.
© (1998) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Antti Lassila, P. Tallgren, Kari Riski, and Erkki Ikonen "Interferometric refractometer with a variable-length vacuum cylinder", Proc. SPIE 3477, Recent Developments in Optical Gauge Block Metrology, (30 September 1998); https://doi.org/10.1117/12.323124
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Cited by 1 scholarly publication.
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KEYWORDS
Interferometers

Refractive index

Beam splitters

Interferometry

Mirrors

Sensors

Signal detection

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