全息术
计算
计算机科学
傅里叶变换
光学
飞秒
空间光调制器
超短脉冲
衍射
铁磁性
激光器
点(几何)
先验与后验
编码(内存)
物理
算法
磁场
人工智能
几何学
数学
量子力学
哲学
磁化
认识论
作者
M. Makowski,J. Bomba,Antoni Frej,Mateusz Kolodziejczyk,Maciej Sypek,Tomoyoshi Shimobaba,Tomoyoshi Ito,A. Kirilyuk,A. Stupakiewicz
标识
DOI:10.1038/s41467-022-35023-9
摘要
Despite recent significant progress in real-time, large-area computer-generated holography, its memory requirements and computational loads will be hard to tackle for several decades to come with the current paradigm based on a priori calculations and bit-plane writing to a spatial light modulator. Here we experimentally demonstrate a holistic approach to serial computation and repeatable writing of computer-generated dynamic holograms without Fourier transform, using minimal amounts of computer memory. We use the ultrafast opto-magnetic recording of holographic patterns in a ferrimagnetic film with femtosecond laser pulses, driven by the on-the-fly hardware computation of a single holographic point. The intensity-threshold nature of the magnetic medium allows sub-diffraction-limited, point-by-point toggling of arbitrarily localized magnetic spots on the sample, according to the proposed circular detour-phase encoding, providing complex modulation and symmetrical suppression of upper diffractive orders and conjugated terms in holographically reconstructed 3-D images.
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