Benchmarking and fidelity response theory of high-fidelity Rydberg gates

发布时间:2026-02-27

演讲人:孙向恺 [Caltech]

时间:10:00-12:00, Feb 27, 2026 (Fri)

地点: Lecture Hall, FIT Building

内容:

The fidelity of entangling operations is a key figure of merit in quantum information processing, especially in the context of quantum error correction. High-fidelity entangling gates in neutral atom arrays have seen remarkable advancement recently. A full understanding of error sources and their respective contributions to gate infidelity will enable the prediction of fundamental limits on quantum gates in neutral atom platforms with realistic experimental constraints. We implement the time-optimal Rydberg CZ gate, design a circuit to benchmark its fidelity, and achieve a fidelity, averaged over symmetric input states, of 0.9971(5) which forms a new state-of-the-art for neutral atoms. The remaining infidelity is explained by an ab initio error model, consistent with our experimental results over a range of gate speeds, with varying contributions from different error sources. Further, we develop a fidelity response theory to efficiently predict infidelity from laser noise with non-trivial power spectral densities. Beyond predicting gate fidelity, this toolbox also enriches the quantum simulation capability of our tweezer array platform.

This talk is based on the work PRXQuantum.6.010331.

个人简介:

Xiangkai Sun is a PhD researcher in experimental quantum physics in Manuel Endres’ group at Caltech. His work focuses on using neutral atoms in optical tweezer arrays to study quantum many-body physics and explore quantum-computing–enabled enhancements to optical clock precision.


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演讲人 孙向恺 时间 10:00-12:00, Feb 27, 2026 (Fri)
地点 RM S527, MMW Building EN
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