论文标题

使用共聚焦腔Q来增强关联记忆回忆和存储能力

Enhancing associative memory recall and storage capacity using confocal cavity QED

论文作者

Marsh, Brendan P., Guo, Yudan, Kroeze, Ronen M., Gopalakrishnan, Sarang, Ganguli, Surya, Keeling, Jonathan, Lev, Benjamin L.

论文摘要

我们引入了一个近期实验平台,以实现关联记忆。它可以通过使用与退化多模光学腔的拼合玻色子同时存储许多记忆。联想记忆是通过共聚焦腔QED神经网络实现的,腔模式用作突触,连接了一个用作神经元的超级原子旋转合奏网络。记忆是在旋转之间的连接矩阵中编码的,可以通过光图的输入和输出访问。该方案的各个方面都是基于最近使用共聚焦腔和玻色符合原子的技术证明的。我们的计划有两个概念上的新元素。首先,它引入了一种新形式的随机旋转系统,该系统将铁磁和旋转玻璃制度之间的插值作为物理参数调节 - - 腔体内合奏的位置。其次,更重要的是,旋转通过确定性的最陡峭的动力学而不是格劳伯动力学而放松。我们表明,这种非平衡量子光学方案比Glauber动态具有显着的关联内存优势:这些动力学可以增强网络在标准Hopfield模型之外的存储和回忆记忆的能力。令人惊讶的是,即使系统处于自旋玻璃相,腔QED动力学也可以检索记忆。因此,实验平台提供了一种新颖的物理实例化,可以对关联记忆和自旋眼镜,并提供了一种与众不同的松弛动力学形式,即使在认为是不可能的情况下,也有利于记忆回忆。

We introduce a near-term experimental platform for realizing an associative memory. It can simultaneously store many memories by using spinful bosons coupled to a degenerate multimode optical cavity. The associative memory is realized by a confocal cavity QED neural network, with the cavity modes serving as the synapses, connecting a network of superradiant atomic spin ensembles, which serve as the neurons. Memories are encoded in the connectivity matrix between the spins, and can be accessed through the input and output of patterns of light. Each aspect of the scheme is based on recently demonstrated technology using a confocal cavity and Bose-condensed atoms. Our scheme has two conceptually novel elements. First, it introduces a new form of random spin system that interpolates between a ferromagnetic and a spin-glass regime as a physical parameter is tuned---the positions of ensembles within the cavity. Second, and more importantly, the spins relax via deterministic steepest-descent dynamics, rather than Glauber dynamics. We show that this nonequilibrium quantum-optical scheme has significant advantages for associative memory over Glauber dynamics: These dynamics can enhance the network's ability to store and recall memories beyond that of the standard Hopfield model. Surprisingly, the cavity QED dynamics can retrieve memories even when the system is in the spin glass phase. Thus, the experimental platform provides a novel physical instantiation of associative memories and spin glasses as well as provides an unusual form of relaxational dynamics that is conducive to memory recall even in regimes where it was thought to be impossible.

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