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English(EN) Physicists turn particles in chaotic orbits into liquid computers — but this fluid hardware still trails memristor rivals

物理学家创造了基于液体的粒子计算机,但落后于忆阻器

物理学家开发了一种新颖的计算系统,使用在液体中运行的400个微小粒子,能够执行混沌信号预测和异常检测。这种在Communications AI & Computing上详细介绍的流体硬件利用激光驱动的二氧化硅球体来创建计算存储库。虽然在任务中表现出精细度,但该系统的准确性大约是基于忆阻器的竞争对手的十分之一,其实际适用性仍在研究中。 AI

影响 这项研究探索了替代的计算范式,但目前的实现方式与忆阻器等成熟技术相比仍有很大差距,限制了对AI行业的直接影响。

排序理由 该集群描述了应用于计算的物理学新研究发现,而非产品发布或重大的行业转变。[lever_c_research降级:ic=2 ai=0.4]

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物理学家创造了基于液体的粒子计算机,但落后于忆阻器

报道来源 [2]

  1. Tom's Hardware TIER_1 English(EN) · Luke James ·

    Physicists turn particles in chaotic orbits into liquid computers — but this fluid hardware still trails memristor rivals

    Each oscillator is a silica sphere of 3μm radius, capped on one side with 80nm of carbon and suspended in a water-lutidine mixture held at 28°C.

  2. Mastodon — mastodon.social TIER_1 English(EN) · [email protected] ·

    Physicists turn particles in chaotic orbits into liquid computers — but this fluid hardware still trails memristor rivals Each oscillator is a silica sphere of

    Physicists turn particles in chaotic orbits into liquid computers — but this fluid hardware still trails memristor rivals Each oscillator is a silica sphere of 3μm radius, capped on one side with 80nm of carbon and suspended in a water-lutidine mixture held at 28°C. https://www. …