Multidimensional Quantum Walks
Stacey Jeffery, Sebastian Zur
Abstract
While the quantum query complexity of ๐-distinctness is known to be ๐ (๐ 3 4 -1 4 1 2 ๐ -1 ) for any constant ๐ โฅ 4 [Belovs, FOCS 2012], the best previous upper bound on the time complexity was ๐ (๐ 1-1/๐ ).
We give a new upper bound of ๐ (๐ 3 4 -1 4 1 2 ๐ -1 ) on the time complexity, matching the query complexity up to polylogarithmic factors. In order to achieve this upper bound, we give a new technique for designing quantum walk search algorithms, which is an extension of the electric network framework. We also show how to solve the welded trees problem in ๐ (๐) queries and ๐ (๐ 2 ) time using this new technique, showing that the new quantum walk framework can achieve exponential speedups.
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