Egan Patrick F, Stone Jack A, Hendricks Jay H, Ricker Jacob E, Scace Gregory E, Strouse Gregory F
Opt Lett. 2015 Sep 1;40(17):3945-8. doi: 10.1364/OL.40.003945.
We have built and characterized a refractometer that utilizes two Fabry-Perot cavities formed on a dimensionally stable spacer. In the typical mode of operation, one cavity is held at vacuum, and the other cavity is filled with nitrogen gas. The differential change in length between the cavities is measured as the difference in frequency between two helium-neon lasers, one locked to the resonance of each cavity. This differential change in optical length is a measure of the gas refractivity. Using the known values for the molar refractivity and virial coefficients of nitrogen, and accounting for cavity length distortions, the device can be used as a high-resolution, multi-decade pressure sensor. We define a reference value for nitrogen refractivity as n-1=(26485.28±0.3)×10(-8) at p=100.0000 kPa, T=302.9190 K, and λ(vac)=632.9908 nm. We compare pressure determinations via the refractometer and the reference value to a mercury manometer.
我们构建并表征了一种折射仪,该折射仪利用在尺寸稳定的间隔物上形成的两个法布里 - 珀罗腔。在典型的操作模式下,一个腔保持真空,另一个腔充满氮气。两个腔之间长度的差异变化通过两个氦氖激光器之间的频率差异来测量,其中一个激光器锁定到每个腔的共振频率。这种光学长度的差异变化是气体折射率的一种度量。利用已知的氮气摩尔折射率和维里系数值,并考虑腔长度的畸变,该装置可作为高分辨率、多数量级的压力传感器。我们将氮气折射率的参考值定义为在(p = 100.0000)kPa、(T = 302.9190)K和(\lambda(vac)=632.9908)nm时,(n - 1=(26485.28 ± 0.3)×10^{-8})。我们将通过折射仪确定的压力以及参考值与汞压力计进行比较。