论文标题
使用具有扭曲边界的一维iSing模型对量子退火器的误差测量
Error measurements for a quantum annealer using the one-dimensional Ising model with twisted boundaries
论文作者
论文摘要
有限长度的铁磁链在其两端施加的相反的自旋极化是最简单的挫败自旋模型之一。在干净的经典限制中,由于边界条件插入的域壁在任何一种债券上都具有相同的概率,并且退化性准确地等于债券的数量。如果通过横向场引入量子力学,则域壁将在盒子中作为粒子行为,并且更喜欢靠近链的中间而不是末端。因此,实际量子退火器的一个简单特征是这些限制在实践中获得的哪个特征。在这里,我们已经使用了反平行边界旋转的铁磁链来测试一个真正的磁量量子量子退火器,并发现与这两种期望相反,发现的域墙是不均匀的,因为有效的随机纵向纵向磁场在毫无疑问的情况下进行了调整,即在此类领域中进行了调整,而在quplings quplings之间进行了调整。我们提出了域壁的分布函数形式的简单推导,并还显示了我们发现的效果如何用于确定表征灭火器的有效随机场(噪声)的强度。以这种方式测量的噪声比单量子调谐过程中所见的噪声小,但是尽管如此,质量影响将影响退火器执行的模拟结果。
A finite length ferromagnetic chain with opposite spin polarisation imposed at its two ends is one of the simplest frustrated spin models. In the clean classical limit the domain wall inserted on account of the boundary conditions resides with equal probability on any one of the bonds, and the degeneracy is precisely equal to the number of bonds. If quantum mechanics is introduced via a transverse field, the domain wall will behave as a particle in a box, and prefer to be nearer the middle of the chain rather than the ends. A simple characteristic of a real quantum annealer is therefore which of these limits obtains in practice. Here we have used the ferromagnetic chain with antiparallel boundary spins to test a real flux qubit quantum annealer and discover that contrary to both expectations, the domain walls found are non-uniformly distributed on account of effective random longitudinal fields present notwithstanding tuning carried out to zero out such fields when the couplings between qubits are nominally zero. We present a simple derivation of the form of the distribution function for the domain walls, and show also how the effect we have discovered can be used to determine the strength of the effective random fields (noise) characterising the annealer. The noise measured in this fashion is smaller than what is seen during the single qubit tuning process, but nonetheless qualitatively affects the outcome of the simulation performed by the annealer.