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Phase-Type Diffractive Imaging Lens with High Diffraction Efficiency and High Error Tolerance

机译:具有高衍射效率和高误差容限的相型衍射成像透镜

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Diffractive lens can realize high-resolution imaging with large aperture and light weight. Conventional amplitude-tpye diffractive lens has extremely low diffraction efficiency, and therefore, it can only work in the situation under extremely strong illumination, such as observation of the sun. Binary diffractive lens has low diffraction efficiency and high sensitivity to fabrication error, which significantly limits its applications in practice. Here, a phase-type diffractive lens with continuous parabolic ring-shaped microstructures (PDLCPRM) is designed. The surface of PDLCPRM is continuous parabolic ring-shaped microstructures, which makes its diffraction efficiency extremely high. Experimental fabrication of the proposed PDLCPRM was performed using the laser direct writing of grey-scale patterns for a PDLCPRM of diameter of 10 mm, a focal length of 100 mm. Experimental results show that the imaging quality of the PDLCPRM close to the diffraction limit and the diffraction efficiency of the PDLCPRM reaches 82%, which are in significant contrast to the conventional amplitude-tpye diffractive lens and binary diffractive lens. Furthermore, the PDLCPRM has high tolerance of height error, which reduces significantly the difficulty of fabrication. PDLCPRM has great potentials in applications of large space telescope and other imaging systems.
机译:衍射透镜可以实现大口径,重量轻的高分辨率成像。常规的振幅-tpye衍射透镜具有极低的衍射效率,因此,它只能在极强的照明条件下工作,例如观察太阳。二元衍射透镜具有较低的衍射效率和对制造误差的高灵敏度,这极大地限制了其在实际中的应用。在此,设计了具有连续抛物线形环形微结构(PDLCPRM)的相型衍射透镜。 PDLCPRM的表面是连续的抛物线形的环形微结构,因此其衍射效率极高。对于直径为10 mm,焦距为100 mm的PDLCPRM,使用激光直接写入灰度图案进行了实验性的拟议PDLCPRM加工。实验结果表明,PDLCPRM的成像质量接近衍射极限,PDLCPRM的衍射效率达到82%,这与常规的振幅tpye衍射透镜和二元衍射透镜形成了鲜明的对比。此外,PDLCPRM具有高度误差的高容限,从而大大降低了制造难度。 PDLCPRM在大型太空望远镜和其他成像系统的应用中具有巨大的潜力。

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