光子学
计算机科学
极化(电化学)
编码
空间光调制器
加密
光学
相位调制
光学计算
调制(音乐)
编码(内存)
维数之咒
极化度
光学工程
电子工程
光通信
激光器
密码学
三维光学数据存储
自由空间光通信
硅光子学
物理
光学性能监测
偏振模色散
光开关
信号处理
正交偏振光谱成像
光传送网
光调制器
空间频率
作者
Claudio Conti,Claudio Conti,Davide Pierangeli
出处
期刊:Nature
[Nature Portfolio]
日期:2026-08-12
标识
DOI:10.1038/s41586-026-10891-z
摘要
Abstract Spatial light modulation is a cornerstone of modern photonics. Crucial advances in photonic information processing 1–3 rely on the spatial manipulation of the optical phase 4–12 and state of polarization (SOP) 13–27 . The degree of polarization (DOP) 28–30 is a fundamental property that can serve as an extra resource. However, no technology exists at present that can spatially modulate the DOP in a programmable manner 31–34 . Here we demonstrate spatial DOP modulation, thereby achieving control over a new degree of freedom of light. By engineering the polarization statistics at the micrometre scale with a phase-only spatial light modulator, we realize more than 1,024 spatial modes with fully programmable SOP and DOP. This structured light, sculpted in its polarization content to arbitrary shapes, enables direct encoding of information in a high-dimensional space. We encode colour images into a single-wavelength laser by using a one-to-one mapping between the red–green–blue space and the volume of the Poincaré sphere. Polarization colours expand the dimensionality of optical computing and encryption schemes, as demonstrated by (1) fully parallel photonic classification of colour images by a high-dimensional photonic neural network and (2) high-security multidimensional optical encryption. These approaches to optical processing of high-dimensional data highlight the opportunities enabled by DOP modulation in photonics, cryptography and computing.
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