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Integration of relay optics in LED-based reflective off-axis digital holographic microscopy

机译:继电器光学系统在基于LED的反射式离轴数字全息显微镜中的集成

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Digital holography is widely known as one of the techniques reconstructing a depth profile of the object. For digital holography (DH), the light source that has a long coherence length such as laser or laser diode is generally recommended. Recently, digital holographic microscopy (DHM) utilizing light emitting diode (LED) as a light source has attracted attention. However, it has to satisfy certain conditions for LED be utilized in off-axis DHM as it has small coherence length. Due to this fact, the hologram cannot be captured from the other side of a beam splitter. Therefore, we propose an LED-based off-axis reflective DHM that combines a 4-f system that optically relays the field to the sensor plane of charge-coupled device (CCD). We analyze the reason why the sample plane has to be relayed by 4-f system. We provide experimental results to verify the necessity of relay optics in LED-based reflective off-axis DHM.
机译:数字全息术是众所周知的重建物体深度轮廓的技术之一。对于数字全息(DH),通常建议使用相干长度较长的光源,例如激光或激光二极管。近来,利用发光二极管(LED)作为光源的数字全息显微镜(DHM)引起了关注。但是,由于相干长度小,因此必须满足在离轴DHM中使用LED的某些条件。由于这个事实,全息图无法从分束器的另一侧捕获。因此,我们提出了一种基于LED的离轴反射DHM,该DHM结合了将光场中继到电荷耦合器件(CCD)传感器平面的4-f系统。我们分析了必须通过4-f系统中继样本平面的原因。我们提供实验结果以验证基于LED的反射离轴DHM中中继光学的必要性。

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