paper

Continuous-angle logical rotations in the Steane code

arXiv:2608.20676

Abstract

We experimentally demonstrate continuous-angle logical rotations in the Steane code on the IonQ Forte trapped-ion processor. A round of the protocol applies a transversal physical rotation by , followed by Steane syndrome extraction and decoding, which induces a syndrome-dependent logical rotation. We analytically derive the effect of dephasing noise on the logical rotation angle and logical dephasing rate. Using logical Ramsey interferometry, we observe coherent syndrome-dependent logical rotations from a single round of the protocol. We find that the logical channel reconstructed from process tomography is a noisy logical rotation well explained by a dephasing model. We further implement a two-round protocol applying physical rotations and , and observe cancellation of the total logical angle with low logical dephasing for repeated trivial syndromes. This constitutes a proof-of-principle demonstration of continuously tunable non-Clifford logical gates by transversal rotations and standard error correction in a small quantum code.

12 pages, 14 figures