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Subspace controllability of multi-partite spin networks

机译:多桥旋转网络的子空间可控性

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In a network of spin 12 particles, controlled through an external electro-magnetic field, the gyromagnetic ratio of each spin is a parameter that characterizes the interaction of the spin with the external control field. Multipartite networks are such that the spins are divided into subsets according to their gyromagnetic ratio and spins in one set interact in the same way with all spins in another set. Due to the presence of symmetries in these types of systems, the underlying Hilbert state space splits into invariant subspaces for the dynamics. Subspace controllability is verified if every unitary evolution can be generated by the dynamics on these subspaces. We give an exact characterization, in terms of graph theoretic conditions, of subspace controllability for multipartite quantum spin networks. This extends and unifies previous results. (c) 2021 Elsevier B.V. All rights reserved.
机译:在通过外部电磁场控制的自旋12粒子网络中,每个自旋的旋磁比是表征自旋与外部控制场相互作用的参数。多体网络是这样的:自旋根据其旋磁比被划分为子集,一组中的自旋与另一组中的所有自旋以相同的方式相互作用。由于这类系统中存在对称性,潜在的希尔伯特状态空间分裂为动力学的不变子空间。如果每个幺正演化都可以由这些子空间上的动力学产生,则证明了子空间的可控性。我们用图论条件给出了多体量子自旋网络子空间能控性的精确刻画。这扩展并统一了以前的结果。(c)2021爱思唯尔B.V.保留所有权利。

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