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QM

Quantum Motion

Quantum Motion is developing a scalable array of qubits using CMOS-compatible silicon technology, enabling the construction of a universal quantum computer. This approach addresses the limitations of current quantum computing architectures by facilitating robust error correction and miniaturization, allowing for practical applications in fields such as chemistry, medicine, and artificial intelligence.

London, United KingdomFounded 2017
Updated 3 months ago

Funding

$213.3M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

BVBBF+5

Founders

Founder details are not available yet.

Product

Problem

Current quantum computing architectures face limitations in scalability and error correction, hindering their practical application in solving complex problems. Existing qubit technologies often struggle with miniaturization and compatibility with standard manufacturing processes.

Solution

Quantum Motion is developing a scalable array of qubits using CMOS-compatible silicon technology to build a universal quantum computer. This approach leverages the simplicity and scalability of silicon-based integrated circuits, enabling robust error correction and miniaturization necessary for dependable quantum computation. By creating quantum computing architectures compatible with standard silicon processing, Quantum Motion aims to unlock the power of quantum computing for intractable problems in diverse fields. Their technology platform focuses on creating a scalable qubit array, addressing the limitations of current quantum computing architectures that struggle to maintain chip size while incorporating the thousands of physical qubits needed for error checking.

Target Audience

The primary target audience includes researchers and organizations in fields such as chemistry, medicine, and artificial intelligence seeking solutions to computationally intensive problems.

Features

  • Utilizes CMOS-compatible silicon technology for qubit fabrication
  • Aims for ultra-scalability to keep chip size manageable even with a large number of qubits
  • Focuses on developing quantum computing architectures compatible with standard silicon processing techniques
This profile is AI-generated and may contain inaccuracies.