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D-Wave
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D-Wave
@dwavequantum
Leader in commercial quantum computing, building annealing and gate-model systems to solve complex problems.
Palo Alto, California
dwavequantum.com
Joined March 2009
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  • Pinned
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    D-Wave
    @dwavequantum
    Jun 30
    We’re proud to announce that D-Wave has been selected to receive a $1.57 million grant through the U.S. National Science Foundation's National Quantum Virtual Laboratory (NQVL) program as a key industry partner in the ERASE quantum project. Led by @Yale University, the project
  • user avatar
    D-Wave
    @dwavequantum
    Aug 7
    Earlier this week, @Nature published D-Wave's research demonstrating a fast, high-fidelity two-qubit entangling gate that preserves the error-correction advantages of our dual-rail qubit architecture. Want to go beyond the headlines for a technical deep-dive into the paper? In
    dwavequantum.com
    Why D-Wave's Two-Qubit Gate Matters for Quantum Error Correction
    New peer-reviewed paper published in Nature confirms D-Wave’s gate-model technology can deliver efficient quantum error correction with significantly lower hardware overhead as systems scale
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    D-Wave
    @dwavequantum
    Aug 7
    📰 In the news. #ICYMI, it’s been an eventful two weeks at D-Wave, from new customer announcements to scientific breakthroughs. Here are the highlights: 🔹@ATT will expand its use of D-Wave's quantum computing technology to address complex optimization challenges across its
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    Newsroom | D-Wave
    From dwavequantum.com
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    D-Wave
    @dwavequantum
    Aug 6
    Today, D-Wave announced Q2 2026 results. Key financial updates include: ➡️ First half bookings of $35.5 million, up over 1,120% year over year ➡️ First half QCaaS production revenue comprised 37.3% of total QCaaS revenue ➡️ First half remaining performance obligations of
  • user avatar
    D-Wave
    @dwavequantum
    Aug 5
    Quantum information is inherently fragile and highly susceptible to errors, making efficient quantum error correction essential for the development of reliable, fault-tolerant gate-model quantum computers. One of gate-model quantum computing’s greatest remaining challenges is
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