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Nontrivial solitonic attractors of nonlinear quantum equations: application to associative memory

机译:非线性量子方程的非增强溶度吸引子:关联记忆的应用

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Nowadays a lot of studies are devoted to non-Von Neumann architectures for information processing to achieve brain-like (neuromorphic) functionality for some tasks. On the other hand, there is explosion of interest to quantum information processing systems and a lot of institutions and companies recently realized NISQ era devices. Thus, it is of great interest whether neuromorphic computing can be combined with quantum approaches. One of the fundamental concepts in neuromorphic computation are associative memories which can be considered as a dissipative dynamical system where attractors represent stored patterns. Recently, it was shown [V.V. Cherny, T. Byrnes, A.N. Pyrkov, Adv. Quantum Technol. 2, 1800087 (2019); A.N. Pyrkov, T. Byrnes, V.V. Cherny, arxiv: 1909.05082] that the nonlinear Schrodinger equation with a simplified dissipative perturbation of special kind and the complex Ginzburg-Landau equation feature a zero-velocity solitonic solution of non-zero amplitude which can be used in analogy to attractors of Hopfield's associative memory. This kind of solitonic attractors can be realized in Bose-Einstein condensates and nonlinear optical systems. Here we give brief summary of the works and present some new data for the approach.
机译:如今,很多研究都致力于非von Neumann架构,用于了解一些任务的脑状(神经胸壁)功能。另一方面,对量子信息处理系统和许多机构和公司最近实现了NISQ时代设备的爆炸性。因此,它非常关注神经形态计算是否可以与量子方法组合。神经形态计算中的一个基本概念是关联存储器,其可以被认为是耗散动态系统,吸引器代表存储的模式。最近,它显示出[V.V. Cherny,T. Byrnes,A.N. Pyrkov,adv。量子技术。 2,1800087(2019);一个。 Pyrkov,T.Byrnes,V.V。 Cherny,Arxiv:1909.05082,非线性Schrodinger方程具有特殊类型的简化耗散扰动和复杂的Ginzburg-Landau方程式的非零振荡溶液的零速度溶度溶液,其可以类似于Hopfield的关联内存的吸引子。这种棒吸引子可以在Bose-Einstein冷凝物和非线性光学系统中实现。在这里,我们向工作简要摘要,并为方法提供一些新数据。

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