arXiv · 2608.10078
Eliminating photon transport in long-baseline optical interferometry using quantum memories
Abstract
In this paper, we describe the fundamental operating mechanisms of optical interferometry using quantum memory and entanglement. We show how these remove the optical delay line bottleneck. Quantum memory is not without its own set of challenges, some of which include very small bandwidths as well as limitations in storage time. We examine the influence of timing artifacts on memory photon capture probability and interferometric complex visibility. We highlight keystone areas of technology that require further development and are essential to realizing these opportunities, as well as ongoing work to overcome these challenges.
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Yousef K. Chahine, Chaohan Cui, William DeRocco, Daniel Gottesman, Saikat Guha, Emil T. Khabiboulline, Zhenning Liu, Brittany McClinton, Jayadev Rajagopal, Fredrik Rantakyro, J. Gabriel Richardson, Stephen Ridgway, Aqil Sajjad, Joohyung Song. 2026-08-10. Eliminating photon transport in long-baseline optical interferometry using quantum memories. https://arxiv.org/abs/2608.10078
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