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Another subexponential-time quantum algorithm for the dihedral hidden subgroup problem

Quantum Physics 2019-09-16 v1

Abstract

We give an algorithm for the hidden subgroup problem for the dihedral group DND_N, or equivalently the cyclic hidden shift problem, that supersedes our first algorithm and is suggested by Regev's algorithm. It runs in exp(O(logN))\exp(O(\sqrt{\log N})) quantum time and uses exp(O(logN))\exp(O(\sqrt{\log N})) classical space, but only O(logN)O(\log N) quantum space. The algorithm also runs faster with quantumly addressable classical space than with fully classical space. In the hidden shift form, which is more natural for this algorithm regardless, it can also make use of multiple hidden shifts. It can also be extended with two parameters that trade classical space and classical time for quantum time. At the extreme space-saving end, the algorithm becomes Regev's algorithm. At the other end, if the algorithm is allowed classical memory with quantum random access, then many trade-offs between classical and quantum time are possible.

Keywords

Cite

@article{arxiv.1112.3333,
  title  = {Another subexponential-time quantum algorithm for the dihedral hidden subgroup problem},
  author = {Greg Kuperberg},
  journal= {arXiv preprint arXiv:1112.3333},
  year   = {2019}
}

Comments

10 pages

R2 v1 2026-06-21T19:51:26.960Z