Choi KiHong, Yim Junkyu, Yoo Seunghwi, Min Sung-Wook
Opt Lett. 2017 Oct 1;42(19):3940-3943. doi: 10.1364/OL.42.003940.
Self-interference digital holography (SIDH) is actively studied because the hologram acquisition under the incoherent illumination condition is available. The key component in this system is wavefront modulating optics, which modulates an incoming object wave into two different wavefront curvatures. In this Letter, the geometric-phase hologram lens is introduced in the SIDH system to perform as a polarization-sensitive wavefront modulator and a single-path beam splitter. This special optics has several features, such as high transparency, a modulation efficiency up to 99%, a thinness of a few millimeters, and a flat structure. The demonstration system is devised, and the numerical reconstruction results from an acquired complex hologram are presented.
自干涉数字全息术(SIDH)因其能够在非相干照明条件下采集全息图而受到广泛研究。该系统的关键部件是波前调制光学元件,它将入射物波调制为两种不同的波前曲率。在本文中,几何相位全息透镜被引入到SIDH系统中,用作偏振敏感波前调制器和单路分束器。这种特殊的光学元件具有高透明度、高达99%的调制效率、几毫米的薄度和平坦结构等特点。设计了演示系统,并给出了从采集到的复全息图进行数值重建的结果。