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Simulating long-distance entanglement in quantum spin chains by superconducting flux qubits

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arxiv 1410.5444 v2 pith:P3ST3I4S submitted 2014-10-20 quant-ph cond-mat.other

Simulating long-distance entanglement in quantum spin chains by superconducting flux qubits

classification quant-ph cond-mat.other
keywords adiabaticentanglementchainsinteractionsquantumqubitscasediscuss
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate the performance of superconducting flux qubits for the adiabatic quantum simulation of long distance entanglement (LDE), namely a finite ground-state entanglement between the end spins of a quantum spin chain with open boundary conditions. As such, LDE can be considered an elementary precursor of edge modes and topological order. We discuss two possible implementations which simulate open chains with uniform bulk and weak end bonds, either with Ising or with XX nearest-neighbor interactions. In both cases we discuss a suitable protocol for the adiabatic preparation of the ground state in the physical regimes featuring LDE. In the first case the adiabatic manipulation and the Ising interactions are realized using dc currents, while in the second case microwaves fields are used to control the smoothness of the transformation and to realize the effective XX interactions. We demonstrate the adiabatic preparation of the end-to-end entanglement in chains of four qubits with realistic parameters and on a relatively fast time scale.

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