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Optical implementations, oracle equivalence, and the Bernstein-Vazirani algorithm

机译:光学实现,oracle等效项和Bernstein-Vazirani算法

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We describe a new implementation of the Bernstein-Vazirani algorithm that relies on the fact that the polarization states of classical light beams can be cloned. We explore the possibility of computing with waves and discuss a classical optical model capable of implementing any algorithm (on n qubits) that does not involve entanglement. The Bernstein-Vazirani algorithm (with a suitably modified oracle), wherein a hidden n-bit vector is discovered by one oracle query as against n oracle queries required classically, belongs to this category. In our scheme, the modified oracle is also capable of computing f(x) for a given x, which is not possible with earlier versions used in recent NMR and optics implementations of the algorithm. (c) 2007 Optical Society of America.
机译:我们描述了Bernstein-Vazirani算法的一种新实现方式,该算法依赖于可以克隆经典光束的偏振态的事实。我们探索了用波进行计算的可能性,并讨论了能够实现不涉及纠缠的任何算法(在n个量子位上)的经典光学模型。 Bernstein-Vazirani算法(具有经过适当修改的oracle),其中一个oracle查询与传统上需要的n个oracle查询相比,发现了一个隐藏的n位向量。在我们的方案中,修改后的oracle也能够针对给定的x计算f(x),这对于该算法的最新NMR和光学实现所使用的早期版本是不可能的。 (c)2007年美国眼镜学会。

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