Opt Express. 2023 Jan 16;31(2):2330-2344. doi: 10.1364/OE.476509.
On-line measurement is a trend of development toward laser-based applications. We present a fiber-integrated force sensor device for laser power measurement with both CW mode and pulse mode based on laser radiometric heat and radiation force sensing simultaneously. The sensor device is fabricated using a standard microfabrication process. Laser intensity is determined through the displacement of a movable mirror measured by an integrated Fabry-Perot interferometer. Compared with the performance of the device in the ambient condition, a non-linearity error of 0.02% and measurement uncertainty of 2.06% is observed in the quasi-vacuum condition for CW laser illumination. This device can measure a CW laser power with a 46.4 μW/Hz noise floor and a minimum detection limit of 0.125 mW. For a pulsed laser, a non-linearity error of 0.37% and measurement uncertainty of 2.08% is achieved with a noise floor of 1.3 μJ/Hz and a minimum detection limit of 3 μJ.
在线测量是基于激光的应用的发展趋势。我们提出了一种基于激光辐射热和辐射力同时传感的光纤集成力传感器,用于 CW 模式和脉冲模式的激光功率测量。该传感器采用标准微加工工艺制造。通过集成 Fabry-Perot 干涉仪测量的可动镜的位移来确定激光强度。与环境条件下的设备性能相比,在 CW 激光照明的准真空条件下,观察到非线性误差为 0.02%,测量不确定度为 2.06%。该设备可以测量具有 46.4 μW/Hz 噪声底和 0.125 mW 最小检测限的 CW 激光功率。对于脉冲激光,噪声底为 1.3 μJ/Hz,最小检测限为 3 μJ,实现了 0.37%的非线性误差和 2.08%的测量不确定度。