Michiel Sprik
Journal of Physics Condensed Matter
We propose an improved quantum algorithm to calculate the Green's function through real-time propagation, and use it to compute the retarded Green's function for the two-, three-, and four-site Hubbard models. This protocol significantly reduces the number of controlled operations when compared to those previously suggested in literature. Such reduction is quite remarkable when considering the two-site Hubbard model, for which we show that it is possible to obtain the exact time propagation of the |N±1) states by exponentiating one single Pauli component of the Hamiltonian, allowing us to perform the calculations on an actual superconducting quantum processor.
Michiel Sprik
Journal of Physics Condensed Matter
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Physics of Fluids
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Macromolecules
S. Cohen, T.O. Sedgwick, et al.
MRS Proceedings 1983