Power loss due to beam splitter cascade in the simultaneous sampling of a volume speckle field for phase retrieval

A. Maallo, P. Almoro
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Abstract

A setup for the simultaneous recording of axially-displaced intensity patterns of a volume speckle field to be used for phase retrieval is proposed. Beam splitters (BS) are cascaded directing the beams to different detectors, in turn, generating different sampling planes. The effective power, which is reflected in the speckle intensity measurements, is however compromised. The BS's transmission and reflection coefficients are evaluated according to the setup under the assumption that the only power loss induced is due to these optics. Simulations show a set of BS combination that delivers the same beam intensity of at least 6% to all the planes still results in successful phase retrieval. Other combinations of beam splitter transmission and reflection values are also explored. The single-shot operation of the proposed technique avoids the time-consuming sequential measurements of the speckle field. Possible future studies include application of the technique to measure a system's characteristic properties that are not temporally fixed like temperature and optical turbulence in the environment.
分束器级联在体积散斑场同步采样中引起的功率损失
提出了一种同时记录体散斑场轴向位移强度模式的装置,用于相位恢复。分束器(BS)级联引导光束到不同的探测器,依次产生不同的采样平面。然而,在散斑强度测量中反映出来的有效功率受到了损害。在假设唯一的功率损失是由这些光学器件引起的情况下,根据设置评估BS的透射和反射系数。仿真结果表明,当一组BS组合向所有平面提供至少6%的相同波束强度时,仍然可以成功地进行相位恢复。对分束器透射和反射值的其他组合也进行了探讨。该技术的单次操作避免了耗时的散斑场连续测量。未来可能的研究包括应用该技术来测量系统的特性,这些特性不是暂时固定的,比如环境中的温度和光学湍流。
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