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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Simulating adiabatic evolution of gapped spin systems
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Simulating adiabatic evolution of gapped spin systems

机译:模拟间隙自旋系统的绝热演化

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We show that adiabatic evolution of a low-dimensional lattice of quantum spins with a spectral gap can be simulated efficiently. In particular, we show that as long as the spectral gap Delta E between the ground state and the first excited state is any constant independent of n, the total number of spins, then the ground-state expectation values of local operators, such as correlation functions, can be computed using polynomial space and time resources. Our results also imply that the local ground-state properties of any two spin models in the same quantum phase can be efficiently obtained from each other. A consequence of these results is that adiabatic quantum algorithms can be simulated efficiently if the spectral gap does not scale with n. The simulation method we describe takes place in the Heisenberg picture and does not make use of the finitely correlated state-matrix product state formalism.
机译:我们表明,可以有效地模拟量子自旋与光谱间隙的低维晶格的绝热演化。特别地,我们表明,只要基态和第一激发态之间的谱隙Delta E是任何独立于n的常数,那么自旋的总数就是局部算子的基态期望值,例如相关性函数,可以使用多项式空间和时间资源进行计算。我们的结果还暗示,可以彼此有效地获得同一量子相中任意两个自旋模型的局部基态特性。这些结果的结果是,如果光谱间隙不随n缩放,则可以高效地模拟绝热量子算法。我们描述的仿真方法发生在海森堡图中,没有使用有限相关的状态矩阵乘积状态形式主义。

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