Jang Yoon-Soo, Wang Guochao, Hyun Sangwon, Kang Hyun Jay, Chun Byung Jae, Kim Young-Jin, Kim Seung-Woo
Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Science Town, Daejeon, 305-701, South Korea.
Department of Instrument Science and Technology, College of Mechatronic Engineering and Automation, National University of Defence Technology (NUDT), Hunan, Changsha, 410073, China.
Sci Rep. 2016 Aug 25;6:31770. doi: 10.1038/srep31770.
A prototype laser distance interferometer is demonstrated by incorporating the frequency comb of a femtosecond laser for mass-production of optoelectronic devices such as flat panel displays and solar cell devices. This comb-referenced interferometer uses four different wavelengths simultaneously to enable absolute distance measurement with the capability of comprehensive evaluation of the measurement stability and uncertainty. The measurement result reveals that the stability reaches 3.4 nm for a 3.8 m distance at 1.0 s averaging, which further reduces to 0.57 nm at 100 s averaging with a fractional stability of 1.5 × 10(-10). The uncertainty is estimated to be in a 10(-8) level when distance is measured in air due to the inevitable ambiguity in estimating the refractive index, but it can be enhanced to a 10(-10) level in vacuum.
通过集成飞秒激光频率梳,展示了一种用于平板显示器和太阳能电池器件等光电器件大规模生产的原型激光距离干涉仪。这种梳状参考干涉仪同时使用四种不同波长,能够进行绝对距离测量,并对测量稳定性和不确定度进行全面评估。测量结果表明,在1.0秒平均时间下,对于3.8米的距离,稳定性达到3.4纳米;在100秒平均时间下,稳定性进一步降至0.57纳米,分数稳定性为1.5×10^(-10)。由于在估计折射率时不可避免地存在模糊性,在空气中测量距离时,不确定度估计在10^(-8)水平,但在真空中可提高到10^(-10)水平。