Neutral atom arrays provide a versatile platform for quantum information processing. However, in large-scale arrays, efficient photon collection remains a bottleneck for key tasks such as fast, non-destructive qubit readout and remote entanglement distribution. We propose a cavity-based approach that enables fast, parallel operations over many atoms using multiple modes of a single optical cavity. By selectively shifting the relevant atomic transitions, each atom can be coupled to a distinct cavity mode, allowing independent simultaneous processing. We present practical system designs that support cavity-mode multiplexing with up to 50 modes, enabling rapid mid-circuit syndrome extraction and significantly enhancing entanglement distribution rates between remote atom arrays. This approach offers a scalable solution to core challenges in neutral atom arrays, advancing the development of practical quantum technologies.
@article{arxiv.2511.20858,
title = {Mode multiplexing for scalable cavity-enhanced operations in neutral-atom arrays},
author = {Ziv Aqua and Matthew L. Peters and David C. Spierings and Guoqing Wang and Edita Bytyqi and Thomas Propson and Vladan Vuletić},
journal= {arXiv preprint arXiv:2511.20858},
year = {2026}
}