Skip to main content
QI

Quantum Interconnects

Quantum Interconnects provides chip‑integrated, fiber‑coupled single‑photon emitters that generate deterministic, high‑purity, and highly indistinguishable photons for quantum networking and distributed quantum computing. Their sources emit narrowband 780 nm photons matched to the rubidium D₂ transition, enabling seamless integration with neutral‑atom platforms.

BostonFounded 202271K+ followers
Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Quantum networking and distributed quantum computing require reliable transfer of quantum information, but existing photon sources are slow, low‑fidelity, and not compatible with neutral‑atom platforms, limiting the scalability of quantum datacenters, secure communications, and distributed sensing.

Solution

Quantum Interconnects offers chip‑integrated, fiber‑coupled single‑photon emitters that produce deterministic, high‑purity, and highly indistinguishable photons on demand. The emitters generate narrowband 780 nm photons precisely matched to the rubidium D₂ transition, enabling seamless interfacing with neutral‑atom quantum processors. By delivering a compact, scalable photon module, the company provides the fundamental building block for high‑speed quantum interconnects linking processors, cities, and satellites, thereby supporting the development of large‑scale quantum datacenters and secure quantum networks.

Target Audience

Primary customers are quantum hardware manufacturers, neutral‑atom quantum processor developers, and organizations building quantum communication networks or quantum datacenters.

Features

  • Deterministic on‑demand photon emission with high purity and indistinguishability
  • Narrowband 780 nm output resonant with the rubidium D₂ transition for atom‑compatible operation
  • Chip‑integrated design with fiber coupling for a small footprint and easy integration
  • Scalable architecture suitable for deployment in quantum links across processors, metropolitan networks, and satellite links
  • High‑speed photon generation to improve fidelity and throughput of quantum information transfer
This profile is AI-generated and may contain inaccuracies.