光子学
物理
随机游动
自由度(物理和化学)
光子
光子晶体
谐波
非线性光学
二次谐波产生
谐波
非线性系统
统计物理学
角动量
对称(几何)
随机数生成
空格(标点符号)
高次谐波产生
谐波分析
系列(地层学)
拓扑(电路)
量子行走
计算机科学
随机过程
光学
变频调速
动量(技术分析)
随机图
位置和动量空间
作者
Zitan Zuo,Yuxuan Wang,Shengzhe Pan,Lulu Han,Yan Xu,Dian Wu,Shicheng Jiang,Jingchun Wu
标识
DOI:10.1038/s41467-026-69668-7
摘要
Random walks-both classical and quantum-unlocked new possibilities in search algorithms and information processing. Although linear photonic systems, with flexible tunability and multiple degrees of freedom, have served as efficient carriers for random walks, they typically require cascaded implementations, presenting a potential limitation on realizing integrated photonic circuits. In this work, we demonstrate a non-cascade, high-dimensional random walk in the orbital angular momentum (OAM) space of light using solid-state high-harmonic spectroscopy. The crystal nonlinearity enables the simultaneous conversion of multiple photons into a series of harmonics with distinct colors and whose OAM distributions are determined by the symmetry of the crystal. This approach reveals the dynamics of photonic degrees of freedom in high-harmonic generation can be naturally framed as an ultrafast, high-dimensional random walk, paving the way for compact, highly stable photonic platforms tailored for solid-state information processing.
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