Alice & Bob is building a $50 million advanced quantum lab in Paris with support from Quantum Machines and Bluefors to develop next-gen QPUs and accelerate product commercialization. The 4,000-square-meter facility will include a nanofabrication cleanroom for prototyping and utilize Quantum Machines’ control solutions alongside Bluefors’ cryostat systems. Funded by their recent $103 million Series B round, the lab aims to advance cat qubit technology and develop a large-scale quantum computer, Graphene, with 100 logical qubits by 2030, underscoring Europe’s role in advancing quantum computing.
Alice & Bob Launch Advanced Quantum Laboratory in Paris
Alice & Bob have announced the establishment of an advanced quantum laboratory in Paris, marking a significant step in their pursuit of fault-tolerant quantum computing. A substantial investment funds the new facility and aims to develop next-generation quantum chips, including Lithium, Beryllium, and Graphene, which are designed to enhance computational capabilities while reducing hardware requirements.
The laboratory features state-of-the-art nanofabrication cleanrooms essential for prototyping advanced quantum processing units (QPUs). These facilities enable the precise manufacturing of cat qubit chips, leveraging superconducting circuits to maintain quantum states at ultra-low temperatures. This precision is critical for achieving high-fidelity quantum operations necessary for large-scale computations and advancing fault-tolerant quantum computing.
Collaborations with Quantum Machines and Bluefors provide the technical foundation for Alice & Bob’s ambitious objectives. Quantum Machines’ hybrid control platform integrates classical and quantum operations, optimizing performance and enabling rapid experimentation cycles. Bluefors’ cryogenic systems maintain the ultra-low temperatures required for stable qubit operation, particularly crucial for Alice & Bob’s large-scale quantum computer Graphene.
By refining their cat qubit architecture and manufacturing processes, Alice & Bob aims to overcome current limitations in quantum error correction and scalability. This progress could lead to transformative applications across various fields, with Paris emerging as a global hub for quantum innovation.
Alice & Bob’s Strategic Vision for Fault-Tolerant Quantum Computing
Alice & Bob’s advanced quantum laboratory in Paris is dedicated to advancing cat qubit technology for fault-tolerant quantum computing. The lab focuses on developing next-generation quantum chips, including Lithium, Beryllium, and Graphene, each designed to enhance computational capabilities while reducing hardware requirements. These efforts aim to address current limitations in quantum error correction and scalability, paving the way for practical applications in fields such as cryptography, optimization, and materials science.
The laboratory includes state-of-the-art nanofabrication cleanrooms essential for prototyping advanced quantum processing units (QPUs). These facilities enable precise manufacturing of cat qubit chips, leveraging superconducting circuits to maintain quantum states at ultra-low temperatures. This precision is critical for achieving high-fidelity quantum operations necessary for large-scale computations and advancing fault-tolerant quantum computing.
Collaborations with Quantum Machines and Bluefors provide the technical foundation for Alice & Bob’s ambitious objectives. Quantum Machines’ hybrid control platform integrates classical and quantum operations, optimizing performance and enabling rapid experimentation cycles. Bluefors’ cryogenic systems maintain the ultra-low temperatures required for stable qubit operation, particularly crucial for Alice & Bob’s large-scale quantum computer Graphene.
By refining their cat qubit architecture and manufacturing processes, Alice & Bob aims to overcome current limitations in quantum error correction and scalability. This progress could lead to transformative applications across various fields, with Paris emerging as a global hub for quantum innovation.

More information
External Link: Click Here For More
