Tuning electric field strength or direction restores near-perfect state transfer in hole-spin qubits via discrete spin-orbit phase-matching conditions independent of rotation axis.
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A mapping of the Z3 Rabi model to a qubit-boson ring enables superconducting implementations and a coupled chain for the Z3 Potts model.
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All-Electric Quantum State Transfer via Spin-Orbit Phase Matching
Tuning electric field strength or direction restores near-perfect state transfer in hole-spin qubits via discrete spin-orbit phase-matching conditions independent of rotation axis.
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From coupled $\mathbb{Z}_3$ Rabi models to the $\mathbb{Z}_3$ Potts model
A mapping of the Z3 Rabi model to a qubit-boson ring enables superconducting implementations and a coupled chain for the Z3 Potts model.
- Enabling Deterministic Passive Quantum State Transfer with Giant Atoms