Qutrit Clifford+T gates are realized using two-body angular momentum couplings, rotations, and one-axis-twisting operations, with extensions to bosonic modes via Jordan-Schwinger and cross-Kerr.
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A single-photon-boosted type-I fusion gate achieves 3/4 success probability with four ancillary photons, cutting resource overhead for large photonic entangled states.
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Qutrit Clifford+T gates by two-body angular momentum couplings, rotations and one-axis-twistings
Qutrit Clifford+T gates are realized using two-body angular momentum couplings, rotations, and one-axis-twisting operations, with extensions to bosonic modes via Jordan-Schwinger and cross-Kerr.
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Single-photon-boosted type-I fusion gates
A single-photon-boosted type-I fusion gate achieves 3/4 success probability with four ancillary photons, cutting resource overhead for large photonic entangled states.