Overcoming Stark-Shift Constraints in Phase-Controlled Rydberg Two-Qubit Gates
Quantum Physics
2026-01-06 v1
Abstract
Stark shifts introduce additional phases that constrain the set of entangling gates that can be prepared via two-photon transitions in the strong Rydberg blockade limit. For non-independently addressed qubits, by controlling the absolute phases and the local amplitudes of the pulses at each qubit, we show that any two-qubit phase gate can be prepared with high fidelity using a three-pulse sequence. Based on these insights, we introduce two robust control schemes tailored to different phase gates that yield better results with pulse sequences of either even or odd length.
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Cite
@article{arxiv.2601.01521,
title = {Overcoming Stark-Shift Constraints in Phase-Controlled Rydberg Two-Qubit Gates},
author = {Ignacio R. Sola and Sebastian C. Carrasco and Vladimir S. Malinovsky and Seokmin Shin and Bo Y. Chang},
journal= {arXiv preprint arXiv:2601.01521},
year = {2026}
}
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6 figures