Pradhan Paresh, Shurvinton Riley, Bourgenot Cyril, Wang Hongchang, Sawhney Kawal
Opt Express. 2025 Apr 21;33(8):17721-17734. doi: 10.1364/OE.549555.
Nickel phosphorous (NiP) is a broadly used optical material for wide-field visible to mid-infrared instrumentation in space applications. The process chain usually involves applying an electroless metal deposition onto a mirror substrate, which is then machined by single-point diamond turning (SPDT). However, the SPDT process leaves low- and mid-spatial frequency errors, which degrades the optical performance. In this work, we demonstrate the use of ion beam figuring (IBF) to correct the low-spatial frequency errors. IBF is a noncontact technique used in the final step of a mirror fabrication, which can precisely correct the surface form errors via a deterministic, stable, and fully computer-controlled process. We report on an IBF process which improves the surface quality of the NiP-coated flat and spherical mirrors. For the flat mirror, the root mean square (RMS) height error over a clear aperture (CA) area of 25 × 15 mm has been improved from 16.3 nm to 3.4 nm after the IBF process. Similarly, for a spherical mirror, the surface irregularity has been reduced from 13.8 nm to 4.4 nm RMS. These irregularities were eventually limited by the diamond turning marks, which could not be corrected or attenuated with the IBF. For further improvement of the surface quality of the NiP mirror, one flat mirror was polished on a lapping tool (chemical and mechanical polishing) and processed through IBF. The surface quality of the NiP mirror achieved a 1.9 nm RMS surface irregularity over a CA of 20 × 10 mm.
镍磷(NiP)是一种广泛应用于空间应用中宽视场可见光至中红外仪器的光学材料。工艺链通常包括在镜面基板上进行化学镀金属沉积,然后通过单点金刚石车削(SPDT)进行加工。然而,SPDT工艺会留下低空间频率和中空间频率误差,从而降低光学性能。在这项工作中,我们展示了使用离子束修形(IBF)来校正低空间频率误差。IBF是一种在镜面制造的最后一步使用的非接触技术,它可以通过确定性、稳定且完全由计算机控制的过程精确校正表面形状误差。我们报告了一种IBF工艺,该工艺提高了镀NiP的平面和球面镜的表面质量。对于平面镜,在25×15mm的有效孔径(CA)区域上,离子束修形工艺后均方根(RMS)高度误差从16.3nm提高到了3.4nm。同样,对于球面镜,表面不规则度从13.8nm RMS降低到了4.4nm RMS。这些不规则度最终受到金刚石车削痕迹的限制,离子束修形无法校正或减弱这些痕迹。为了进一步提高NiP镜的表面质量,对一块平面镜在研磨工具上进行了抛光(化学和机械抛光)并通过离子束修形进行处理。在20×10mm的有效孔径上,NiP镜的表面质量达到了1.9nm RMS的表面不规则度。