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SODA2023Top-tier venue

Mean estimation when you have the source code; or, quantum Monte Carlo methods

Robin Kothari, Ryan O'Donnell

2023Year
11Citations
6Top-tier citations

Abstract

Suppose y is a real random variable, and one is given access to “the code” that generates it (for example, a randomized or quantum circuit whose output is y). We give a quantum procedure that runs the code O(n) times and returns an estimate for μ = E[y] that with high probability satisfies , where σ = stddev[y]. This dependence on n is optimal for quantum algorithms. One may compare with classical algorithms, which can only achieve the quadratically worse . Our method improves upon previous works, which either made additional assumptions about y, and/or assumed the algorithm knew an a priori bound on σ, and/or used additional logarithmic factors beyond O(n). The central subroutine for our result is essentially Grover's algorithm but with complex phases. * The full version of the paper can be accessed at https://arxiv.org/abs/2208.07544

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