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- W3002215217 abstract "We design efficient controlled-rotation gates with arbitrary angle acting on three-spin encoded qubits for exchange-only quantum computation. Two pulse sequence constructions are given. The first is motivated by an analytic derivation of the efficient Fong-Wandzura sequence for an exact cnot gate. This derivation, briefly reviewed here, is based on elevating short sequences of swap pulses to an entangling two-qubit gate. To go beyond cnot, we apply a similar elevation to a modified short sequence consisting of swaps and one pulse of arbitrary duration. This results in two-qubit sequences that carry out controlled-rotation gates of arbitrary angle. The second construction streamlines a class of arbitrary cphase gates established earlier. Both constructions are based on building two-qubit sequences out of subsequences with special properties that render each step of the construction analytically tractable." @default.
- W3002215217 created "2020-01-30" @default.
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- W3002215217 date "2020-08-26" @default.
- W3002215217 modified "2023-10-12" @default.
- W3002215217 title "Efficient two-qubit pulse sequences beyond CNOT" @default.
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- W3002215217 doi "https://doi.org/10.1103/physrevb.102.075311" @default.
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