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首页> 外文期刊>Reports on Mathematical Physics >PARAMETRIC QUANTUM SEARCH ALGORITHM AS QUANTUM WALK: A QUANTUM SIMULATION
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PARAMETRIC QUANTUM SEARCH ALGORITHM AS QUANTUM WALK: A QUANTUM SIMULATION

机译:作为量子游动的参数量子搜索算法:一个量子模拟

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Parametric quantum search algorithm (PQSA) is a form of quantum search that results by relaxing the unitarity of the original algorithm. PQSA can naturally be cast in the form of quantum walk, by means of the formalism of oracle algebra. This is due to the fact that the completely positive trace preserving search map used by PQSA, admits a unitarization (unitary dilation) a la quantum walk, at the expense of introducing auxiliary quantum coin-qubit space. The ensuing QW describes a process of spiral motion, chosen to be driven by two unitary Kraus generators, generating planar rotations of Bloch vector around an axis. The quadratic acceleration of quantum search translates into an equivalent quadratic saving of the number of coin qubits in the QW analogue. The associated to QW model Hamiltonian operator is obtained and is shown to represent a multi-particle long-range interacting quantum system that simulates parametric search. Finally, the relation of PQSA-QW simulator to the QW search algorithm is elucidated.
机译:参数量子搜索算法(PQSA)是一种量子搜索形式,通过放松原始算法的统一性而产生。通过甲骨文代数的形式主义,PQSA可以自然地以量子步态的形式进行转换。这是由于以下事实:PQSA使用的完全正迹线保留搜索图允许进行量子步态的统一化(单一扩张),而引入了辅助量子硬币-量子位空间。随后的QW描述了螺旋运动的过程,该过程选择由两个整体式Kraus发电机驱动,从而产生Bloch矢量绕轴的平面旋转。量子搜索的二次加速转化为QW模拟中硬币量子位数量的等效二次节省。获得了与QW模型相关的哈密顿算子,并显示了它代表了模拟参数搜索的多粒子远程相互作用量子系统。最后,阐明了PQSA-QW模拟器与QW搜索算法的关系。

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