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. 2005 May 6;94(17):170201.
doi: 10.1103/PhysRevLett.94.170201. Epub 2005 May 4.

Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

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Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Matthias Troyer et al. Phys Rev Lett. .

Abstract

Quantum Monte Carlo simulations, while being efficient for bosons, suffer from the "negative sign problem" when applied to fermions--causing an exponential increase of the computing time with the number of particles. A polynomial time solution to the sign problem is highly desired since it would provide an unbiased and numerically exact method to simulate correlated quantum systems. Here we show that such a solution is almost certainly unattainable by proving that the sign problem is nondeterministic polynomial (NP) hard, implying that a generic solution of the sign problem would also solve all problems in the complexity class NP in polynomial time.

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