most citedTwo-qubit atomic gates: Spatio-temporal control of Rydberg interaction

7 citations · 7 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph2023

Two-qubit quantum gates with minimal pulse sequences

Ignacio R. Sola, Seokmin Shin, Bo Y. Chang

Working with trapped atoms at close distance to each other, we show that one can implement entangling gates based on non-independent qubits using a single pulse per qubit, or a sin…

quant-ph2023

Revisiting Quantum Optimal Control Theory: New Insights for the Canonical Solutions

Katherine Castro, Ignacio R. Solá, Juan J. Omiste

In this study, we present a revision of the Quantum Optimal Control Theory (QOCT) originally proposed by Rabitz et al (Phys. Rev. A 37, 49504964 (1988)), which has broad applicatio…

quant-ph2023

Spatiotemporal control of entangling gates on atomic N-qubit systems

Ignacio R. Sola, Seokmin Shin, Bo Y. Chang

We use a novel optimization procedure that includes the temporal and spatial parameters of the pulses acting on arrays of trapped neutral atoms, to prepare entangling gates in N-qu…

quant-ph20237 cited

Two-qubit atomic gates: Spatio-temporal control of Rydberg interaction

Ignacio R. Sola, Vladimir S. Malinovsky, Jaewook Ahn +2

By controlling the temporal and spatial features of light, we propose a novel protocol to prepare two-qubit entangling gates on atoms trapped at close distance, which could potenti…

quant-ph2023

Finding, mapping and classifying optimal protocols for two-qubit entangling gates

Ignacio R. Sola, Seokmin Shin, Bo Y. Chang

We characterize the set of optimal protocols for two-qubit entangling gates through a mechanism analysis based on quantum pathways, which allows us to compare and rank the differen…