论文标题

混合量子古典算法的优化格局:从量子控制到NISQ应用

The Optimization Landscape of Hybrid Quantum-Classical Algorithms: from Quantum Control to NISQ Applications

论文作者

Ge, Xiaozhen, Wu, Re-Bing, Rabitz, Herschel

论文摘要

这篇综述研究了许多迅速开发的量子技术中普遍的混合量子量子优化算法的景观,在这些量子技术中,该目标函数要么由天然量子系统或工程设计的量子ANSATZ计算,但是优化器是经典的。在任何特殊情况下,基础控制景观的性质对于目标的系统优化至关重要。在早期对几体动力学的最佳控制的研究中,优化器可以完全控制要操纵的量子系统,其Hilbert空间维度相对较小。进入嘈杂的中间量子量子(NISQ)时代,以量子硬件表示的ANSATZ的实验增长的计算能力可能会给经典计算机带来量子优势,但是经典优化器通常受到可用控制资源的限制。在这些不同的尺度上,我们将表明,景观的几何形状体验了从有利的无陷阱景观到易于捕获的崎landscapes的形态学变化,并最终转变为优化器几乎无法移动的贫瘠斑块景观。这种统一的观点为理解可能很容易控制的系统类别的类别提供了基础,包括特殊考虑的人,包括NISQ技术的困难和潜在优势,并寻求可能逃脱陷阱或高原的可能方法。

This review investigates the landscapes of prevalent hybrid quantum-classical optimization algorithms in many rapidly developing quantum technologies, where the objective function is either computed by a natural quantum system or a quantum ansatz that is engineered, but the optimizer is classical. In any particular case, the nature of the underlying control landscape is fundamentally important for systematic optimization of the objective. In early studies on the optimal control of few-body dynamics, the optimizer could take full control of the quantum systems to be manipulated whose Hilbert space dimension is relatively small. Stepping into the noisy intermediate-scale quantum (NISQ) era, the experimentally growing computational power of the ansatz expressed as quantum hardware may bring quantum advantage over classical computers, but the classical optimizer is often limited by the available control resources. Across these different scales, we will show that the landscape's geometry experiences morphological changes from favorable trap-free landscapes to easily trapping rugged landscapes, and eventually to barren-plateau landscapes on which the optimizer can hardly move. This unified view provides the basis for understanding classes of systems that may be readily controlled out to those with special consideration, including the difficulties and potential advantages of NISQ technologies, as well as seeking possible ways to escape traps or plateaus, in particular circumstances.

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