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量子计算机的缺陷。

Defects in Quantum Computers.

作者信息

Gardas Bartłomiej, Dziarmaga Jacek, Zurek Wojciech H, Zwolak Michael

机构信息

Theoretical Division, LANL, Los Alamos, New Mexico, 87545, USA.

Institute of Physics, University of Silesia, 40-007, Katowice, Poland.

出版信息

Sci Rep. 2018 Mar 14;8(1):4539. doi: 10.1038/s41598-018-22763-2.

Abstract

The shift of interest from general purpose quantum computers to adiabatic quantum computing or quantum annealing calls for a broadly applicable and easy to implement test to assess how quantum or adiabatic is a specific hardware. Here we propose such a test based on an exactly solvable many body system-the quantum Ising chain in transverse field-and implement it on the D-Wave machine. An ideal adiabatic quench of the quantum Ising chain should lead to an ordered broken symmetry ground state with all spins aligned in the same direction. An actual quench can be imperfect due to decoherence, noise, flaws in the implemented Hamiltonian, or simply too fast to be adiabatic. Imperfections result in topological defects: Spins change orientation, kinks punctuating ordered sections of the chain. The number of such defects quantifies the extent by which the quantum computer misses the ground state, and is, therefore, imperfect.

摘要

研究兴趣从通用量子计算机转向绝热量子计算或量子退火,这就需要一种广泛适用且易于实施的测试,以评估特定硬件的量子特性或绝热特性。在此,我们基于一个可精确求解的多体系统——横场中的量子伊辛链,提出了这样一种测试,并在D-Wave机器上实现了该测试。量子伊辛链的理想绝热猝灭应导致一个有序的破缺对称基态,所有自旋都沿同一方向排列。由于退相干、噪声、所实现哈密顿量中的缺陷,或者仅仅是速度太快而无法实现绝热,实际的猝灭可能并不完美。这些不完美会导致拓扑缺陷:自旋改变方向,扭结打断链的有序部分。此类缺陷的数量量化了量子计算机偏离基态的程度,因此表明该量子计算机并不完美。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84ee/5852091/3a2a2efcf0ac/41598_2018_22763_Fig1_HTML.jpg

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