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Quantum Frontiers: Rigetti's New Powerhouse, Solana’s Vault, and Microsoft’s Leap
Quantum Computing Newsletter 🤖
Welcome to The Bell State.
Your weekly roundup of the biggest breakthroughs in Quantum Computing
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Rigetti launches 84-qubit Quantum Computer
Rigetti Computing has launched its new 84-qubit Ankaa-3 quantum computer, marking a significant advancement in quantum technology. (Source)
Ankaa-3 features a comprehensive hardware redesign, including a new cryogenic system and optimized qubit chip layout, improving efficiency and reducing costs per qubit.
Improved Gate Fidelity: The system achieves a median 99.5% two-qubit gate fidelity, indicating high reliability in quantum operations.
Rigetti emphasizes its commitment to superconducting quantum computing, citing advantages such as fast gate speeds and established manufacturing processes.
Takeaway: The launch of Ankaa-3 underscores Rigetti’s progress in developing more efficient and reliable quantum computers, contributing to the advancement of quantum computing technology.
Solana’s Quantum-Resistant Vault Initiative
Solana moves quickly to provide quantum resistance. (Source)
Solana developers have introduced an optional quantum-resistant vault designed to safeguard user funds from potential future threats posed by quantum computing.
The vault employs advanced cryptographic techniques to protect against the possibility of quantum computers compromising current encryption methods.
This initiative reflects proactive measures within the blockchain community to address emerging technological challenges.
Takeaway: Solana’s implementation of a quantum-resistant vault exemplifies the blockchain industry’s commitment to future-proofing security in anticipation of advancements in quantum computing.
Microsoft's Collaborative Quantum Leap
Building the future of quantum with logical qubits and error-free computing (source)
Microsoft, in collaboration with partners like Atom Computing, is making significant progress in developing logical qubits, which are essential for building scalable and fault-tolerant quantum computers.
By partnering with companies such as Atom Computing, Microsoft aims to accelerate the transition from experimental quantum systems to practical applications, leveraging combined expertise to overcome current technological challenges.
A major emphasis is placed on error correction techniques, crucial for the reliability of quantum computations. Microsoft's research in this area is pivotal for the advancement of quantum technology toward real-world usability.
Takeaway: Microsoft's collaborative efforts and focus on developing logical qubits and error correction are instrumental in advancing quantum computing from theoretical concepts to practical, scalable technologies with real-world applications.
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💼 JOB BOARD 💼
Internship - Moodys
Quantum Sales Executive - IBM
Director of Product Marketing - Quantinuum
Research Scientist - MIT Lincoln Lab
Quantum Management Engineer - Google
Hybrid Software Engineer- Atom Computing
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Product Marketing Manager (Remote) - IonQ
Semiconductor Quantum Computing Expert - Johns Hopkins
Hardware Engineer, Microwave Design, Quantum AI - Google
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