Local Hamiltonians Whose Ground States Are Hard to Approximate

Lior Eldar, A. Harrow
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引用次数: 56

Abstract

Ground states of local Hamiltonians can be generally highly entangled: any quantum circuit that generates them (even approximately) must be sufficiently deep to allow coupling (entanglement) between any pair of qubits. Until now this property was not known to be robust - the marginals of such states to a subset of the qubits containing all but a small constant fraction of them may be only locally entangled, and hence approximable by shallow quantum circuits. In this work we construct a family of 16-local Hamiltonians for which any 1-10^-8 fraction of qubits of any ground state must be highly entangled.This provides evidence that quantum entanglement is not very fragile, and perhaps our intuition about its instability is an artifact of considering local Hamiltonians which are not only local but spatially local. Formally, it provides positive evidence for two wide-open conjectures in condensed-matter physics and quantum complexity theory which are the qLDPC conjecture, positing the existence of good quantum LDPC codes, and the NLTS conjecture due to Freedman and Hastings positing the existence of local Hamiltonians in which any low-energy state is highly-entangled.Our Hamiltonian is based on applying the hypergraph product by Tillich-Zemor to the repetition code with checks from an expander graph. A key tool in our proof is a new lower bound on the vertex expansion of the output of low-depth quantum circuits, which may be of independent interest.
基态难以近似的局部哈密顿量
局部哈密顿子的基态通常是高度纠缠的:任何产生它们的量子电路(即使是近似的)必须足够深,以允许任何一对量子位之间的耦合(纠缠)。到目前为止,这种特性还不知道是否具有鲁棒性——除了一小部分恒定的量子比特之外,所有量子比特的子集的这种状态的边缘可能只是局部纠缠,因此可以用浅量子电路近似。在这项工作中,我们构造了一个包含16个局部哈密顿量的族,对于这个族,任何基态的量子位元的任何1-10^-8分数必须是高度纠缠的。这提供了量子纠缠不是很脆弱的证据,也许我们对其不稳定性的直觉是考虑局部哈密顿量的产物,不仅是局部的,而且是空间局部的。在形式上,它为凝聚态物理和量子复杂性理论中的两个大开放猜想提供了积极的证据,即假设存在良好量子LDPC码的qLDPC猜想,以及由于弗里德曼和黑斯廷斯假设存在任何低能态高度纠缠的局部哈密顿量的NLTS猜想。我们的哈密顿量是基于将Tillich-Zemor的超图积应用于具有扩展图检查的重复码。我们证明的一个关键工具是低深度量子电路输出的顶点展开的一个新的下界,这可能是一个独立的兴趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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