1-way quantum finite automata: strengths, weaknesses and generalizations

A. Ambainis, R. Freivalds
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引用次数: 269

Abstract

We study 1-way quantum finite automata (QFAs). First, we compare them with their classical counterparts. We show that, if an automaton is required to give the correct answer with a large probability (greater than 7/9), then any 1-way QFAs can be simulated by a 1-way reversible automaton. However, quantum automata giving the correct answer with smaller probabilities are more powerful than reversible automata. Second, we show that 1-way QFAs can be very space-efficient. We construct a 1-way QFA that is exponentially smaller than any equivalent classical (even randomized) finite automaton. We think that this construction may be useful for design of other space-efficient quantum algorithms. Third, we consider several generalizations of 1-way QFAs. Here, our goal is to find a model which is more powerful than 1-way QFAs keeping the quantum part as simple as possible.
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单向量子有限自动机:优点、缺点和推广
我们研究单向量子有限自动机(QFAs)。首先,我们将它们与经典版本进行比较。我们证明,如果自动机被要求以大概率(大于7/9)给出正确答案,那么任何单向qfa都可以由单向可逆自动机模拟。然而,量子自动机以较小的概率给出正确答案,比可逆自动机更强大。其次,我们展示了单向qfa可以非常节省空间。我们构造了一个单向QFA,它比任何等效的经典(甚至是随机的)有限自动机都要小。我们认为这种结构可能对其他空间高效量子算法的设计有用。第三,我们考虑了单向qfa的几个概括。在这里,我们的目标是找到一个比单向qfa更强大的模型,使量子部分尽可能简单。
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