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Superconducting Qubits Quantum Simulation

Ancilla-based quantum simulation

arXiv
Authors: Katherine L. Brown, Suvabrata De, Vivien M. Kendon, William J. Munro

Year

2010

Paper ID

10447

Status

Preprint

Abstract Read

~2 min

Abstract Words

144

Citations

N/A

Abstract

We consider simulating the BCS Hamiltonian, a model of low temperature superconductivity, on a quantum computer. In particular we consider conducting the simulation on the qubus quantum computer, which uses a continuous variable ancilla to generate interactions between qubits. We demonstrate an ON3 improvement over previous work conducted on an NMR computer [PRL 89 057904 (2002) & PRL 97 050504 (2006)] for the nearest neighbour and completely general cases. We then go on to show methods to minimise the number of operations needed per time step using the qubus in three cases; a completely general case, a case of exponentially decaying interactions and the case of fixed range interactions. We make these results controlled on an ancilla qubit so that we can apply the phase estimation algorithm, and hence show that when N \geq 5, our qubus simulation requires significantly less operations that a similar simulation conducted on an NMR computer.

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  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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  • We consider simulating the BCS Hamiltonian, a model of low temperature superconductivity, on a quantum computer.

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