首页> 外文会议>Oceans - Europe >Reducing the Aberrations of Holographic Images of Underwater Particles by Using the Off-axis Scheme with Normal Incidence of Object Beam
【24h】

Reducing the Aberrations of Holographic Images of Underwater Particles by Using the Off-axis Scheme with Normal Incidence of Object Beam

机译:通过使用偏离轴方案,减少水下粒子的全息图像的像差,具有对象束的正常入射

获取原文

摘要

In this paper we describe a method of recording by combining back-illumination of in-line objects with an off-axis reference beam to produce low-aberration holograms. This is advantageous since at the reconstruction stage no extra means of compensation are required. Calculations have shown that the spherical aberration does not exceed 5% for objects from 100 to 200μm at a wavelength of 0.532μm, the longitudinal spherical aberration does not exceed 1%, and astigmatism does not exceed 1%. A series of holograms were recorded to confirm the above predictions. Two targets consisting of arrays of squares, triangles, hexagons, rectangles and circles with dimensions of 100μm and 200μm were fabricated on glass plates by photolithography. Holograms were recorded with the objects placed in air or in water at various distances. After processing, holograms were replayed at λ=0.633μm and at λ=0.542μm. More than 100 images were compared with the original targets for shape, dimensions and evidence of aberrations. Corresponding particles sizes differ by no more than 10%. The above experiments allow us to conclude that use the off-axis scheme with normal incidence of object beam on holoplates can provide a reduction of aberrations without any additional compensation at reconstruction stage.
机译:在本文中,我们通过将线对象与轴外参考光束相结合,来描述一种记录方法,以产生低差像素全息图。这是有利的,因为在重建阶段不需要额外的补偿装置。计算显示,所述球面像差不会在0.532μm的波长超过从100到200微米的物体5%,纵向球面像差不超过1%,和散光不超过1%。记录了一系列全息图以确认上述预测。包括正方形,三角形,六边形,矩形和圆与100微米和200微米的尺寸的阵列中的两个目标被通过光刻法制造的玻璃板上。通过放置在空气中或在水中的物体以各种距离进行全息图。处理之后,全息图在λ=0.633μm,并在λ=0.542μm被重放。将超过100个图像与原始目标进行比较,其形状,尺寸和像差的证据。相应的颗粒尺寸不同不超过10%。上述实验允许我们得出结论,使用挖土板上对象梁的正常发生率的偏离轴方案可以在重建阶段进行任何额外补偿的畸变减少。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号