English

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

Quantum Physics 2007-05-23 v3 Computational Complexity

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 (over 0.98), then the power of 1-way QFAs is equal to the power of 1-way reversible automata. 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. Namely, we construct a 1-way QFA which is exponentially smaller than any equivalent classical (even randomized) finite automaton. 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.

Keywords

Cite

@article{arxiv.quant-ph/9802062,
  title  = {1-way quantum finite automata: strengths, weaknesses and generalizations},
  author = {A. Ambainis and R. Freivalds},
  journal= {arXiv preprint arXiv:quant-ph/9802062},
  year   = {2007}
}

Comments

23 pages LaTeX, 1 figure, to appear at FOCS'98