English

Limitations on the simulation of non-sparse Hamiltonians

Quantum Physics 2018-12-20 v2

Abstract

The problem of simulating sparse Hamiltonians on quantum computers is well studied. The evolution of a sparse N x N Hamiltonian H for time t can be simulated using O(||Ht||poly(log N)) operations, which is essentially optimal due to a no--fast-forwarding theorem. Here, we consider non-sparse Hamiltonians and show significant limitations on their simulation. We generalize the no--fast-forwarding theorem to dense Hamiltonians, ruling out generic simulations taking time o(||Ht||), even though ||H|| is not a unique measure of the size of a dense Hamiltonian HH. We also present a stronger limitation ruling out the possibility of generic simulations taking time poly(||Ht||,log N), showing that known simulations based on discrete-time quantum walk cannot be dramatically improved in general. On the positive side, we show that some non-sparse Hamiltonians can be simulated efficiently, such as those with graphs of small arboricity.

Keywords

Cite

@article{arxiv.0908.4398,
  title  = {Limitations on the simulation of non-sparse Hamiltonians},
  author = {Andrew M. Childs and Robin Kothari},
  journal= {arXiv preprint arXiv:0908.4398},
  year   = {2018}
}

Comments

v1: 12 pages. v2: 15 pages; strengthened main result

R2 v1 2026-06-21T13:40:22.866Z