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    • 1. 发明申请
    • OPTICAL PHASE PROCESSING IN A SCATTERING MEDIUM
    • 散射介质中的光相处理
    • US20110001980A1
    • 2011-01-06
    • US12886320
    • 2010-09-20
    • Zahid YaqoobEmily McDowellChanghuei Yang
    • Zahid YaqoobEmily McDowellChanghuei Yang
    • G01B9/021G03H1/04
    • G03H1/0005G03H2001/0083G03H2001/0268G03H2001/0413G03H2001/0415G03H2210/63G03H2222/56
    • An optical phase processing system for a scattering medium. A first beam has a direction and a wavefront and the first beam is configured to enter a holographic recording medium. A scattering medium is illuminated by a signal beam generating at least one scattered beam. An interference pattern is recorded from the at least one scattered beam and the first beam. A second beam is generated in a direction opposite to the direction of the first beam, the second beam having a wavefront and a phase substantially opposite to a phase of the wavefront of the first beam, and the second beam is configured to enter the holographic recording medium. The second beam and the interference pattern interact to generate at least one reconstructed beam having a phase substantially opposite to a phase of the at least one scattered beam, and the at least one reconstructed beam is configured to be viewable through the scattering medium.
    • 一种用于散射介质的光学相位处理系统。 第一光束具有方向和波前,并且第一光束被配置为进入全息记录介质。 散射介质由产生至少一个散射光束的信号光束照射。 从至少一个散射光束和第一光束记录干涉图案。 在与第一光束的方向相反的方向上产生第二光束,第二光束具有波前和与第一光束的波阵面的相位基本相反的相位,第二光束被配置为进入全息记录 中。 所述第二光束和所述干涉图案相互作用以产生具有与所述至少一个散射光束的相位基本相反的相位的至少一个重建光束,并且所述至少一个重构光束被配置为通过所述散射介质可观看。
    • 2. 发明授权
    • Optical phase processing in a scattering medium
    • 散射介质中的光学相位处理
    • US08525998B2
    • 2013-09-03
    • US12886320
    • 2010-09-20
    • Zahid YaqoobEmily McDowellChanghuei Yang
    • Zahid YaqoobEmily McDowellChanghuei Yang
    • G01B9/021
    • G03H1/0005G03H2001/0083G03H2001/0268G03H2001/0413G03H2001/0415G03H2210/63G03H2222/56
    • An optical phase processing system for a scattering medium. A first beam has a direction and a wavefront and the first beam is configured to enter a holographic recording medium. A scattering medium is illuminated by a signal beam generating at least one scattered beam. An interference pattern is recorded from the at least one scattered beam and the first beam. A second beam is generated in a direction opposite to the direction of the first beam, the second beam having a wavefront and a phase substantially opposite to a phase of the wavefront of the first beam, and the second beam is configured to enter the holographic recording medium. The second beam and the interference pattern interact to generate at least one reconstructed beam having a phase substantially opposite to a phase of the at least one scattered beam, and the at least one reconstructed beam is configured to be viewable through the scattering medium.
    • 一种用于散射介质的光学相位处理系统。 第一光束具有方向和波前,并且第一光束被配置为进入全息记录介质。 散射介质由产生至少一个散射光束的信号光束照射。 从至少一个散射光束和第一光束记录干涉图案。 在与第一光束的方向相反的方向上产生第二光束,第二光束具有波前和与第一光束的波阵面的相位基本相反的相位,第二光束被配置为进入全息记录 中。 所述第二光束和所述干涉图案相互作用以产生具有与所述至少一个散射光束的相位基本相反的相位的至少一个重建光束,并且所述至少一个重建光束被配置为通过所述散射介质可观看。
    • 3. 发明申请
    • OPTICAL PHASE PROCESSING IN A SCATTERING MEDIUM
    • 散射介质中的光相处理
    • US20090009834A1
    • 2009-01-08
    • US11868394
    • 2007-10-05
    • Zahid YaqoobEmily McDowellChanghuei Yang
    • Zahid YaqoobEmily McDowellChanghuei Yang
    • G03H1/08
    • G03H1/0005G03H2001/0083G03H2001/0268G03H2001/0413G03H2001/0415G03H2210/63G03H2222/56
    • An optical phase processing system for a scattering medium. A first beam has a direction and a wavefront and the first beam is configured to enter a holographic recording medium. A scattering medium is illuminated by a signal beam generating at least one scattered beam. An interference pattern is recorded from the at least one scattered beam and the first beam. A second beam is generated in a direction opposite to the direction of the first beam, the second beam having a wavefront and a phase substantially opposite to a phase of the wavefront of the first beam, and the second beam is configured to enter the holographic recording medium. The second beam and the interference pattern interact to generate at least one reconstructed beam having a phase substantially opposite to a phase of the at least one scattered beam, and the at least one reconstructed beam is configured to be viewable through the scattering medium.
    • 一种用于散射介质的光学相位处理系统。 第一光束具有方向和波前,并且第一光束被配置为进入全息记录介质。 散射介质由产生至少一个散射光束的信号光束照射。 从至少一个散射光束和第一光束记录干涉图案。 在与第一光束的方向相反的方向上产生第二光束,第二光束具有波前和与第一光束的波阵面的相位基本相反的相位,第二光束被配置为进入全息记录 中。 所述第二光束和所述干涉图案相互作用以产生具有与所述至少一个散射光束的相位基本相反的相位的至少一个重建光束,并且所述至少一个重建光束被配置为通过所述散射介质可观看。