Artusio-Glimpse Alexandra B, Rogers Kyle A, Williams Paul A, Lehman John H
National Institute of Standards and Technology, Boulder, CO, United States of America.
Metrologia. 2021;58(5). doi: 10.1088/1681-7575/ac1e34.
We present the first measurements of kilowatt laser power with an uncertainty less than 1 %. These represent progress toward the most accurate measurements of laser power above 1 kW at 1070 nm wavelength and establish a more precise link between force metrology and laser power metrology. Radiation pressure, or photon momentum, is a relatively new method of non-destructively measuring laser power. We demonstrate how a multiple reflection optical system amplifies the pressure of a kilowatt class laser incoherently to improve the signal to noise ratio in a radiation pressure-based measurement. With 14 incoherent reflections of the laser, we measure a total uncertainty of 0.26 % for an input power of 10 kW and 0.46 % for an input power of 1 kW at the 95 % confidence level. These measurements of absolute power are traceable to the SI kilogram and mark a state-of-the-art improvement in measurement precision by a factor of four.
我们首次测量了不确定度小于1%的千瓦级激光功率。这些测量结果朝着在1070纳米波长下对1千瓦以上激光功率进行最精确测量迈进了一步,并在力计量学和激光功率计量学之间建立了更精确的联系。辐射压力,即光子动量,是一种相对较新的无损测量激光功率的方法。我们展示了一个多次反射光学系统如何非相干地放大千瓦级激光的压力,以提高基于辐射压力测量的信噪比。通过对激光进行14次非相干反射,在95%置信水平下,我们测得输入功率为10千瓦时的总不确定度为0.26%,输入功率为1千瓦时的总不确定度为0.46%。这些绝对功率测量结果可溯源到国际单位制千克,并标志着测量精度在现有水平上提高了四倍。