Universal quantum computer from a quantum magnet
classification
🪐 quant-ph
cond-mat.str-el
keywords
quantumcomputationhamiltonianinteractionsuniversalaffleck-kennedy-lieb-tasakicomputercondensed
read the original abstract
We show that a local Hamiltonian of spin-3/2 particles with only two-body nearest-neighbor Affleck-Kennedy-Lieb-Tasaki and exchange-type interactions has an unique ground state, which can be used to implement universal quantum computation merely with single-spin measurements. We prove that the Hamiltonian is gapped, independent of the system size. Our result provides a further step towards utilizing systems with condensed matter-type interactions for measurement-based quantum computation.
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