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IBM, Cisco to collaborate on quantum computing - Currently.com

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⚡ Quantum Brief
IBM and Cisco announced a collaboration to develop distributed quantum computing networks, targeting a proof-of-concept by 2030. The partnership merges IBM’s quantum hardware expertise with Cisco’s networking infrastructure to enable large-scale, fault-tolerant quantum systems. The initiative focuses on linking quantum computers across locations using microwave-optical transducers and new software. Goals include scaling to tens of thousands of qubits and trillions of quantum gates for complex simulations and optimization problems. A key challenge is transmitting qubits over long distances, requiring optical-photon and microwave-optical transducers. IBM plans a Quantum Networking Unit (QNU) to bridge stationary and mobile quantum data within networks. Cisco is designing dynamic software protocols to reconfigure network paths for efficient entanglement distribution. The companies aim to create a "quantum internet" foundation, eventually connecting global quantum computers, sensors, and communication systems. Potential applications include secure communications, climate monitoring, and seismic activity tracking. IBM also collaborates with the SQMS Center for a multi-QPU demonstration within three years.
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A rendering of IBM Quantum Starling, IBM’s large-scale, fault-tolerant quantum computer, which is scheduled for release in 2029. Credit: IBM. IBM and Cisco have unveiled plans to jointly advance the development of distributed quantum computing networks. The initiative aims to connect large-scale, fault-tolerant quantum computers, with the companies targeting an initial proof-of-concept demonstration by the end of 2030. Access deeper industry intelligence Experience unmatched clarity with a single platform that combines unique data, AI, and human expertise. Find out more According to the companies, the collaboration will focus on linking quantum computers in distinct environments using new types of connections, including microwave-optical transducers and supporting software. The two technology firms propose to combine IBM’s experience in constructing quantum systems with Cisco’s research into quantum networking infrastructure. Their stated objective is to facilitate computations involving tens to hundreds of thousands of qubits and potentially trillions of quantum gates, which are central to applications such as optimisation problems and the simulation of complex materials. Within five years, IBM and Cisco plan to show how several large-scale quantum computers can operate as a networked system. GlobalData Strategic Intelligence US Tariffs are shifting - will you react or anticipate? Don’t let policy changes catch you off guard. Stay proactive with real-time data and expert analysis. By GlobalData Learn more about Strategic Intelligence They also aim to address technical challenges involved in transmitting qubits over extended distances, such as between buildings or separate data centres. This would necessitate exploring optical-photon and microwave-optical transducer technologies to transfer quantum information across a network. IBM has outlined its intention to develop a quantum networking unit (QNU) that would serve as an intermediary between stationary quantum information in a quantum processing unit (QPU) and mobile quantum data transmitted through the network. IBM Research and IBM Fellow director Jay Gambetta said: “At IBM, our roadmap includes plans to deliver large-scale, fault-tolerant quantum computers before the end of the decade. “By working with Cisco to explore how to link multiple quantum computers like these together into a distributed network, we will pursue how to further scale quantum’s computational power.” For its part, Cisco is working on a software protocol framework capable of dynamically reconfiguring network paths so entanglements can be efficiently distributed among QNUs, allowing for coordinated quantum computations. Both companies are investigating how network bridges made up of new hardware components and open-source software could use Cisco network nodes to link IBM QPUs within a data centre, and eventually between multiple centres. This approach is seen as forming the foundation for what could become a “quantum computing internet”. Outshift by Cisco senior vice president and general manager Vijoy Pandey said: “IBM is building quantum computers with aggressive roadmaps for scale-up, and we are bringing quantum networking that enables scale-out. “Together, we are solving this as a complete system problem, including the hardware to connect quantum computers, the software to run computations across them, and the networking intelligence that makes them work.” IBM is also collaborating with the Superconducting Quantum Materials and Systems Center (SQMS), led by Fermi National Accelerator Laboratory, as part of its participation in four of the US Department of Energy’s National Quantum Information Science Research Centers. IBM and SQMS are preparing for an initial demonstration involving multiple connected QPUs within three years, focusing on integrating many QNUs within quantum data centres. Looking further ahead, both companies expect that a distributed and scalable quantum computing network could expand computational capacity exponentially. Such infrastructure may enable new forms of technology connecting quantum computers, sensors, and communication systems across metropolitan or global distances. According to IBM and Cisco, potential uses include secure communications or enhanced monitoring capabilities for climate, weather, and seismic activities. Recently, IBM announced the reduction of its workforce by a low single-digit percentage this quarter as it continues to transition towards software and AI-driven services, as per a Bloomberg report. Sign up for our daily news round-up! Give your business an edge with our leading industry insights. Sign up Go deeper with GlobalData Reports Internet of Things (IoT) Market Size, Share, Trends and Analysis by Type (Enterprise, Consumer), ...

Reports Quantum Computing - Thematic Intelligence Go deeper with GlobalData The gold standard of business intelligence. Find out more Access deeper industry intelligence Experience unmatched clarity with a single platform that combines unique data, AI, and human expertise.

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