Double spiral phase filter digital in-line holography for particle field recording and tracking

被引:0
|
作者
Lobera, J. [1 ]
López Torres, A.M. [1 ]
Andrés, N. [1 ]
Torcal-Milla, F.J. [1 ]
Roche, E.M. [1 ]
Palero, V. [1 ]
机构
[1] Instituto de Investigación en Ingeniería de Aragón (I3A), Universidad de Zaragoza, Zaragoza, Spain
关键词
Holography - Image reconstruction - Velocimeters - Wiener filtering;
D O I
10.1016/j.optlaseng.2024.108694
中图分类号
学科分类号
摘要
The application of digital in-line holography in fluid velocimetry is mainly limited by the twin image that hinders the particle position and velocity measurements. In this work, we propose the use of two spiral phase filters in a digital in-line holography configuration to discriminate the real and virtual images. The first filter is a physical plate that modifies the object spectrum prior the recording. The second filter is a numerical frequency filter, applied in the reconstruction process, which reshape one of the particle images into a point-like image while blurs its twin image. In this way, particle tracking algorithms, based on the detection of intensity peaks, can easily locate and track particles. The good performance of double spiral phase filter in-line holography for particle field recording and particle tracking has been demonstrated experimentally in the present work. © 2024 The Authors
引用
下载
收藏
相关论文
共 50 条
  • [41] Measurements of particle fields by in-line holography
    Gao, HW
    Sun, CD
    Qin, JJ
    2ND INTERNATIONAL SYMPOSIUM ON ADVANCED OPTICAL MANUFACTURING AND TESTING TECHNOLOGIES: OPTICAL TEST AND MEASUREMENT TECHNOLOGY AND EQUIPMENT, PTS 1 AND 2, 2006, 6150
  • [42] High-speed (20 kHz) digital in-line holography for transient particle tracking and sizing in multiphase flows
    Guildenbecher, Daniel R.
    Cooper, Marcia A.
    Sojka, Paul E.
    APPLIED OPTICS, 2016, 55 (11) : 2892 - 2903
  • [43] Application of multiple exposure digital in-line holography to particle tracking in a Benard-von Karman vortex flow
    Salah, N.
    Godard, G.
    Lebrun, D.
    Paranthoen, P.
    Allano, D.
    Coetmellec, S.
    MEASUREMENT SCIENCE AND TECHNOLOGY, 2008, 19 (07)
  • [44] Digital in-line holography with numerical reconstruction
    Kreuzer, HJ
    Pomerleau, N
    Blagrave, K
    Jericho, MH
    INTERFEROMETRY '99: TECHNIQUES AND TECHNOLOGIES, 1999, 3744 : 65 - 74
  • [45] Digital in-line holography for wavefront sensing
    Panahi, Majid
    Darudi, Ahmad
    Moradi, Ali-Reza
    OPTICS AND LASER TECHNOLOGY, 2025, 180
  • [46] Digital in-line holography of biological specimens
    Ryle, James P.
    Gopinathan, Unnikrishnan
    McDonnell, Susan
    Naughton, Thomas J.
    Sheridan, John T.
    OPTICAL INFORMATION SYSTEMS IV, 2006, 6311
  • [47] Resolution power in digital in-line holography
    Garcia-Sucerquia, J
    Xu, W
    Jericho, SK
    Jericho, MH
    Klages, P
    Kreuzer, HJ
    ICO20: OPTICAL INFORMATION PROCESSING, PTS 1 AND 2, 2006, 6027
  • [48] Digital in-line holography for biological applications
    Xu, WB
    Jericho, MH
    Meinertzhagen, IA
    Kreuzer, HJ
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (20) : 11301 - 11305
  • [49] Digital in-line holography with photons and electrons
    Kreuzer, HJ
    Jericho, MJ
    Meinertzhagen, IA
    Xu, WB
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2001, 13 (47) : 10729 - 10741
  • [50] Digital in-line holography of dusty plasmas
    Kroll, M.
    Harms, S.
    Block, D.
    Piel, A.
    PHYSICS OF PLASMAS, 2008, 15 (06)