# Qluster\.co: Scalable quantum computing powered by continuous\-variable photonics > Qluster develops a scalable photonic quantum computer designed to deliver fault\-tolerant, industrial\-scale quantum computing power\. Generated by Yoast SEO v27.8, this is an llms.txt file, meant for consumption by LLMs. ## Pages - [About Us](https://qluster.co/about-us/) - [Contact](https://qluster.co/contact/) - [Privacy Policy](https://qluster.co/privacy-policy/) - [Home](https://qluster.co/) - [Legal Notice](https://qluster.co/legal-notice/) ## Posts - [Qluster is heading to Boston for Quantum Tech World 2026](https://qluster.co/qluster-boston-quantum-tech-world-2026/): We are excited to announce that Qluster will be crossing the Atlantic to participate in Quantum Tech World in Boston on June 25\-26, 2026\. - [Real\-time monitoring of multimode squeezing](https://qluster.co/real-time-monitoring-multimode-squeezing/): Multimode squeezed light is a key resource for high\-dimensional quantum technologies, enhancing metrological sensitivity, boosting communication security, and enabling parallel processing in computation\. Its practical potential, however, remains constrained by the inherent single\-mode operation of homodyne detection, necessitating post\-processing for multimode characterization\. - [Qluster wins 1st Prize at ENS Innovation Awards](https://qluster.co/qluster-wins-1st-prize-at-ens-innovation-awards/): We are thrilled to announce that Qluster has been awarded the 1st Prize at the very first edition of École normale supérieure \(ENS\) Innovation Awards\. This recognition marks a significant milestone for our vision and our commitment to build Qluster\. - [Multimode squeezed state for reconfigurable quantum networks at telecommunication wavelengths](https://qluster.co/multimode-squeezed-state-for-reconfigurable-quantum-networks-at-telecommunication-wavelengths/): Continuous variable encoding of quantum information requires the deterministic generation of highly correlated quantum states of light in the form of quantum networks, which, in turn, necessitates the controlled generation of a large number of squeezed modes\. In this paper, we present an experimental source of multimode squeezed states of light at telecommunication wavelengths\. - [Experimental memory control in continuous\-variable optical quantum reservoir computing](https://qluster.co/experimental-memory-control-in-continuous-variable-optical-quantum-reservoir-computing/) ## Optional - [Sitemap index](https://qluster.co/sitemap_index.xml)