TY - JOUR
T1 - Revision to the humidity correction equation in the calculation formulae of the air refractive index based on a phase step interferometer with three frequency-stabilized lasers
AU - Chen, Qianghua
AU - Zhang, Mengce
AU - Liu, Shuaijie
AU - He, Yongxi
AU - Luo, Huifu
AU - Luo, Jun
AU - Lv, Weiwei
N1 - Publisher Copyright:
© 2016 IOP Publishing Ltd.
PY - 2016/10/14
Y1 - 2016/10/14
N2 - At present the formulae proposed by G Boensch and E Potulski in 1998 (Boensch and Potulski 1998 Metrologia 35 133-9) are mostly used to calculate the air refractive index. However, the humidity correction equation in the formulae is derived by using the light source of a Cd lamp whose light frequency stability is poor and at a narrow temperature range, around 20 °C. So it is no longer suitable in present optical precision measurements. To solve this problem, we propose a refractive index measurement system based on phase step interferometer with three frequency stabilized lasers (532 nm, 633 nm, 780 nm), corrected coefficients of the humidity are measured and a corresponding revised humidity correction equation is acquired. Meanwhile, the application temperature range is extended from 14.6 °C to 25.0 °C. The experiment comparison results at the temperature of 22.2-23.2 °C show the accuracy by the presented equation is better than that of Boensch and Potulski.
AB - At present the formulae proposed by G Boensch and E Potulski in 1998 (Boensch and Potulski 1998 Metrologia 35 133-9) are mostly used to calculate the air refractive index. However, the humidity correction equation in the formulae is derived by using the light source of a Cd lamp whose light frequency stability is poor and at a narrow temperature range, around 20 °C. So it is no longer suitable in present optical precision measurements. To solve this problem, we propose a refractive index measurement system based on phase step interferometer with three frequency stabilized lasers (532 nm, 633 nm, 780 nm), corrected coefficients of the humidity are measured and a corresponding revised humidity correction equation is acquired. Meanwhile, the application temperature range is extended from 14.6 °C to 25.0 °C. The experiment comparison results at the temperature of 22.2-23.2 °C show the accuracy by the presented equation is better than that of Boensch and Potulski.
KW - air refractive index
KW - humidity correction
KW - measurement
KW - phase step interferometer
KW - three frequency stabilized lasers
UR - http://www.scopus.com/inward/record.url?scp=84995482128&partnerID=8YFLogxK
U2 - 10.1088/0957-0233/27/12/125002
DO - 10.1088/0957-0233/27/12/125002
M3 - Article
AN - SCOPUS:84995482128
SN - 0957-0233
VL - 27
JO - Measurement Science and Technology
JF - Measurement Science and Technology
IS - 12
M1 - 125002
ER -