Wei Ji Feng, Chang Yan, Sun Li Qun, Zhang Kai, Hu Xiao Yang, Zhang Wei
State Key Laboratory of Precision Measurement Technology and Instrument, Tsinghua University, Beijing 100084, People's Republic of China.
Institute of Applied Electronics, China Academy of Engineering Physics, Mianyang 621900, People's Republic of China.
Rev Sci Instrum. 2016 Apr;87(4):045114. doi: 10.1063/1.4947259.
Electro-optical equivalent calibration with high calibration power and high equivalence is particularly well-suited to the calibration of high-energy laser energy meters. A large amount of energy is reserved during this process, however, which continues to radiate after power-off. This study measured the radiation efficiency of a halogen tungsten lamp during power-on and after power-off in order to calculate the total energy irradiated by a lamp until the high-energy laser energy meter reaches thermal equilibrium. A calibration system was designed based on the measurement results, and the calibration equivalence of the system was analyzed in detail. Results show that measurement precision is significantly affected by the absorption factor of the absorption chamber and by heat loss in the energy meter. Calibration precision is successfully improved by enhancing the equivalent power and reducing power-on time. The electro-optical equivalent calibration system, measurement uncertainty of which was evaluated as 2.4% (k = 2), was used to calibrate a graphite-cone-absorption-cavity absolute energy meter, yielding a calibration coefficient of 1.009 and measurement uncertainty of 3.5% (k = 2). A water-absorption-type high-energy laser energy meter with measurement uncertainty of 4.8% (k = 2) was considered the reference standard, and compared to the energy meter calibrated in this study, yielded a correction factor of 0.995 (standard deviation of 1.4%).
具有高校准功率和高等效性的电光等效校准特别适用于高能激光能量计的校准。然而,在此过程中会储存大量能量,断电后这些能量仍会继续辐射。本研究测量了卤钨灯在通电和断电期间的辐射效率,以便计算直到高能激光能量计达到热平衡时灯所辐射的总能量。基于测量结果设计了一个校准系统,并对该系统的校准等效性进行了详细分析。结果表明,测量精度受吸收腔的吸收系数和能量计中的热损失影响显著。通过提高等效功率和缩短通电时间成功提高了校准精度。该校准系统的电光等效校准系统,其测量不确定度评估为2.4%(k = 2),用于校准石墨锥吸收腔绝对能量计,得到校准系数为1.009,测量不确定度为3.5%(k = 2)。将测量不确定度为4.8%(k = 2)的吸水式高能激光能量计作为参考标准,与本研究中校准的能量计进行比较,得到校正因子为0.995(标准偏差为1.4%)。