全息术
光学
测速
粒子跟踪测速
斑点图案
粒子图像测速
物理
全息干涉法
光轴
散斑噪声
景深
湍流
镜头(地质)
热力学
作者
Hui Meng,Fazle Hussain
出处
期刊:Applied optics
[The Optical Society]
日期:1995-04-10
卷期号:34 (11): 1827-1827
被引量:127
摘要
Prior approaches (e.g., off-axis holography) to overcoming the limitations of in-line holography for particle fields, namely, intrinsic speckle noise and depth resolution, involved an increased complexity of the optical system. The in-line recording and off-axis viewing (IROV) technique employs a single laser beam to record an in-line hologram, which is then viewed off axis during reconstruction. The signal-to-noise ratio and depth resolution of IROV are higher than conventional in-line holography by an order of magnitude and are comparable with off-axis holography. IROV is a much simpler approach than off-axis holography and is highly promising for holographic particle velocimetry. Measurements of the three-dimensional flow velocity field of a vortex ring obtained by an IROV-based holographic particle velocimetry system are presented.
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