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Mission Apollo: Landing Optical Circuit Switching at Datacenter Scale

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arxiv 2208.10041 v1 pith:QVLORXMN submitted 2022-08-22 cs.NI

classification cs.NI
keywords opticalswitchingapollodatacenterapplicationsbidirectionalchoicescircuit
verification ladder T0 review T1 audit T2 compute T3 formal
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In this paper, we describe Apollo, to the best of our knowledge, the world's first large-scale production deployment of optical circuit switches (OCSes) for datacenter networking. We will first describe the infrastructure challenges and use cases that motivated optical switching inside datacenters. We then delve into the requirements of OCSes for datacenter applications: balancing cost, port count, switching time, and optical performance, which drive design choices and implementation details of our internally developed 3D MEMS-based OCS. To enable the Apollo optical switching layer, we employ circulators to realize bidirectional links through the OCS, effectively doubling the OCS radix. The OCS and circulator design choices were critical for meeting network bandwidth, scale, and cost targets. We review the critical co-design of WDM transceiver technology for these OCS plus circulator-based bidirectional links and their corresponding physical impairments, delivered over four generations/speeds of optical interconnect. Finally, we conclude with thoughts on future directions in hardware development and associated applications.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 25 citations worldwide. Full citation record

  1. InfiniteHBD: Building Datacenter-Scale High-Bandwidth Domain for LLM with Optical Circuit Switching Transceivers

    cs.NI 2025-02 conditional novelty 8.0 of 10

    InfiniteHBD embeds optical circuit switching inside each transceiver to build reconfigurable ring networks for GPU clusters, claiming node-level fault isolation at roughly one-third the cost of NVL-72.

  2. Zero-change foundry compatible silicon photonics MEMS optical switch

    physics.optics 2026-08 conditional novelty 6.0 of 10

    A zero-change foundry silicon photonics MEMS switch using the chip's existing metal layers as an actuator achieves >30 dB extinction, <1.5 dB insertion loss, and ~20 nW static power.

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