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Spin lattices with two-body Hamiltonians for which the ground state encodes a cluster state

机译:旋转与双体汉密尔顿人的旋转格子,地面状态编码群集状态

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We present a general procedure for constructing lattices of qubits with a Hamiltonian composed of nearest-neighbor two-body interactions such that the ground state encodes a cluster state. We give specific details for lattices in one, two, and three dimensions, investigating both periodic and fixed boundary conditions, as well as present a proof for the applicability of this procedure to any graph. We determine the energy gap of these systems, which is shown to be independent of the size of the lattice but dependent on the type of lattice (in particular, the coordination number), and investigate the scaling of this gap in terms of the coupling constants of the Hamiltonian. We provide a comparative analysis of the different lattice types with respect to their usefulness for measurement-based quantum computation.
机译:我们介绍了构造Qubits的格子与由最近邻的双体交互组成的哈贝特的格子构建,使得地面状态对群集状态进行编码。 我们为一个,两个和三维提供格子的具体细节,调查周期性和固定边界条件,以及提出该过程适用于任何曲线图的证据。 我们确定这些系统的能隙,其被证明与晶格的大小无关,但依赖于晶格(特别是协调数)的类型,并在耦合常数方面研究这种间隙的缩放 汉密尔顿人。 我们对其对基于测量的量子计算的有用性提供了对不同晶格类型的比较分析。

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