论文标题

FEQA:量子退火器上的有限元计算

FEqa: Finite Element Computations on Quantum Annealers

论文作者

Raisuddin, Osama Muhammad, De, Suvranu

论文摘要

使用量子计算机使用有限元方法离散化的物理问题解决方案仍然相对尚未探索。在这里,我们提出了一个统一的公式(FEQA),以使用量子退火器解决此类问题。 FEQA是一种混合技术,其中有限元问题在经典计算机上提出,并使用量子退火器最小化残差。 FEQA的优点包括每个自由度使用单个量子,实施Dirichlet边界条件先验,达到任意解决方案的精度,并消除了退火器产生无效结果的可能性。 FEQA由于其单个程序多个数据(SPMD)性质而在算法的经典部分上可扩展,并且不依赖于退火器的基态解决方案。研究了量子退火中使用的大量搭配点的余弦措施,并开发了新的迭代技术来利用其性质。量子退火器在计算时间中比模拟退火具有明显的优势,因为本文在D-Wave机器上解决的问题中提出了问题。提出的工作为使用量子退火器解决了物理问题提供了途径。

The solution of physical problems discretized using the finite element methods using quantum computers remains relatively unexplored. Here, we present a unified formulation (FEqa) to solve such problems using quantum annealers. FEqa is a hybrid technique in which the finite element problem is formulated on a classical computer, and the residual is minimized using a quantum annealer. The advantages of FEqa include utilizing a single qubit per degree of freedom, enforcing Dirichlet boundary conditions a priori, reaching arbitrary solution precision, and eliminating the possibility of the annealer generating invalid results. FEqa is scalable on the classical portion of the algorithm due to its Single Program Multiple Data (SPMD) nature and does not rely on ground state solutions from the annealer. The exponentially large number of collocation points used in quantum annealing are investigated for their cosine measures, and new iterative techniques are developed to exploit their properties. The quantum annealer has clear advantages in computational time over simulated annealing, for the example problems presented in this paper solved on the D-Wave machine. The presented work provides a pathway to solving physical problems using quantum annealers.

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