Xu Yang, Tang Sirui, Nicholas Black A, Boyd Robert W
Opt Express. 2023 Dec 4;31(25):42723-42729. doi: 10.1364/OE.506383.
Orthogonal optical coding is widely used in classical multi-user communication networks. Using the phase conjugation property of stimulated parametric down-conversion, we extend the current time-domain orthogonal optical coding scheme to the spatial domain to encode and decode image information. In this process, the idler beam inherits the complex conjugate of the field information encoded in the seed beam. An encoding phase mask introduced onto the input seed beam blurs the image transferred to the idler. The original image is restored by passing the coded transferred image through a corrective phase mask placed in the momentum space of the idler beam. We expect that this scheme can also inspire new techniques in secure image transmission, aberration cancellation, and frequency conversion imaging.
正交光学编码在经典多用户通信网络中被广泛应用。利用受激参量下转换的相位共轭特性,我们将当前的时域正交光学编码方案扩展到空间域,以对图像信息进行编码和解码。在此过程中,闲频光束继承了编码在种子光束中的场信息的复共轭。引入到输入种子光束上的编码相位掩模会使传输到闲频光束的图像变得模糊。通过将编码后的传输图像通过置于闲频光束动量空间中的校正相位掩模,可以恢复原始图像。我们期望该方案也能激发安全图像传输、像差消除和频率转换成像等方面的新技术。