Gkp Codes is a superconducting qubit approach for quantum computing hardware. Source: latex text.
Abstract
We present a universal logical gate set for finite-energy Gottesman-Kitaev-Preskill (GKP) qubits encoded in the harmonic motional states of trapped neutral atoms. Internal electronic states serve as ancilla for implementing state-dependent conditional displacements in phase space, enabling arbitrary single-qubit phase gates. A Transient Rydberg excitation-mediated atomic dipole-dipole interaction enables a controlled-Z gate without invoking the blockade mechanism. The gates operate under magic-trapping conditions, allowing continuous trapping throughout the gate sequence, thereby preserving the motional encoding without intermediate measurement or feedforward. We assess the experimental feasibility of the proposed protocols using neutral atoms and obtain average gate fidelities of for single-qubit phase gates and for the controlled-Z gate at a finite squeezing parameter of (12 dB of squeezing), increasing to and respectively as reaches . These results provide a route toward universal, measurement-free logical control of motional GKP qubits in neutral-atom architectures.
Key Findings
Links
- arXiv: 2608.30631
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