Rigetti's 84-qubit Ankaa-3 system
Ankaa-3 is Rigetti's newest flagship quantum computer featuring an extensive hardware redesign that enables superior performance. Enhancements across the technology stack include a new cryogenic hardware design, an overhaul of the qubit circuit layout, precise qubit frequency targeting with Alternating-Bias Assisted Annealing, and flexible gate architecture with precise controls. Photo Credit: Drew Bird Photography
Ankaa-3 features a broad hardware redesign enabling superior performance. Enhancements across the technology stack include a new cryogenic hardware design, an overhaul of the qubit circuit layout, precise qubit frequency targeting with Alternating-Bias Assisted Annealing, and flexible gate architecture with precise controls. Ankaa-3 has achieved a 99.5% median two-qubit gate fidelity.
BERKELEY, Calif., Dec. 23, 2024 (GLOBE NEWSWIRE) -- Rigetti Computing, Inc. (Nasdaq: RGTI) ("Rigetti" or the "Company"), a pioneer in full-stack quantum-classical computing, announced today the public launch of its 84-qubit Ankaa-3 system. Ankaa-3 is Rigetti's newest flagship quantum computer featuring an extensive hardware redesign that enables superior performance. Rigetti also celebrates major two-qubit gate fidelity milestones with Ankaa-3: successfully halving error rates in 2024 to achieve a median 99.0% iSWAP gate fidelity, as well as demonstrating 99.5% median fidelity fSim gates.
Ankaa-3 is now available to its partners via the Rigetti Quantum Cloud Services platform (QCS) and will be coming to Amazon Braket and Microsoft Azure in the first quarter of 2025. Users will be able to operate these higher fidelity and universal iSWAP gates for a wide range of algorithmic research, with a median gate time of 72 nanoseconds. The faster (median 56 nanoseconds), more specialized fSim gates are useful for specific algorithms such as random circuit sampling, as recently demonstrated on Google's Willow system.
The Ankaa-3 system continues to feature Rigetti's scalable, industry-leading chip architecture with 3D signal delivery while incorporating major enhancements to key technologies. Leveraging the Company's full-stack expertise and in-house quantum foundry capabilities, Ankaa-3 demonstrates Rigetti's ability to deliver increasingly higher performance quantum computers.
The Company's focus on improving qubit fidelity has resulted in enhancements across the technology stack:
All new cryogenic hardware design - Reducing the amount of metal at the refrigerator's coldest stage increases efficiency and reduces the cost per qubit. Superior thermalization and magnetic/environmental shielding also improves system performance. This new design enables scaling up to thousands of qubits.
Improved qubit chip - Rigetti overhauled its qubit chip, leading to improved coherence. Through its collaboration with the Superconducting Quantum Materials & Systems Center (SQMS) led by Fermilab, Rigetti implemented a metal deposition method for qubit circuitry with a higher T1 baseline -- which indicates the lifetime of a qubit. Additionally, the circuit layout was optimized to minimize qubit losses and take advantage of the new higher-coherence process.
Josephson junction fabrication with Alternating-Bias Assisted Annealing (ABAA) - The Ankaa-3 chip features the hallmarks of Rigetti's Ankaa-class chip architecture with a square lattice of qubits and tunable couplers. The 84-qubit chip's Josephson junctions are manufactured using Rigetti's novel ABAA technique. ABAA allows for precise qubit frequency targeting, which enables better execution of two-qubit gates and increases in yield, both of which contribute to higher fidelity.
Precise control and flexible gate architecture - Rigetti has invested heavily in the control technologies underpinning its QPUs. Chip-wide optimization of qubit and tunable coupler frequencies produces fewer unwanted qubit-qubit interactions, and real-time, in-hardware pulse pre-compensation produces gates with lower incoherent errors. Rigetti has also developed a robust calibration process for highly expressive square-root-iSWAP-like gates while solving some of the compilation challenges associated with their practical usage, resulting in an nQA-oriented gate set with significantly lower error rates.
"With approximately $225 million of cash, cash equivalents and available for sale investments and no debt, we are extremely confident in our ability to deliver on our roadmap and performance goals. The remarkable performance of Ankaa-3 reinforces our leadership in the superconducting quantum computing field -- which we believe is the winning modality for high-performance quantum computers due to their many advantages, including fast gate speeds and well-established manufacturing processes," says Dr. Subodh Kulkarni, Rigetti CEO.
"Our teams, across the technology stack, work incredibly hard to introduce new, innovative ways to increase our system's performance. As we continue the journey towards fault tolerance, we are constructing computing systems with capabilities that have not been seen before," says David Rivas, Rigetti CTO. "At Rigetti, working closely with our partners, we are committed to finding ways to put those systems to practical use."
Rigetti plans to introduce the next generation of its modular system architecture, while continuing to increase fidelities, in 2025. By mid-year 2025, the Company expects to release a 36-qubit system based on four 9-qubit chips tiled together, with a targeted 2x reduction in error rates from the current level. By the end of 2025, the Company expects to release a system with over 100 qubits with a targeted 2x reduction in error rates from the current level.
About Rigetti
Rigetti is a pioneer in full-stack quantum computing. The Company has operated quantum computers over the cloud since 2017 and serves global enterprise, government, and research clients through its Rigetti Quantum Cloud Services platform. In 2021, Rigetti began selling on-premises quantum computing systems with qubit counts between 24 and 84 qubits, supporting national laboratories and quantum computing centers. Rigetti's 9-qubit Novera QPU was introduced in 2023 supporting a broader R&D community with a high-performance, on-premises QPU designed to plug into a customer's existing cryogenic and control systems. The Company's proprietary quantum-classical infrastructure provides high-performance integration with public and private clouds for practical quantum computing. Rigetti has developed the industry's first multi-chip quantum processor for scalable quantum computing systems. The Company designs and manufactures its chips in-house at Fab-1, the industry's first dedicated and integrated quantum device manufacturing facility.
Rigetti's 84-qubit Ankaa-3 system
Ankaa-3是Rigetti最新的旗舰量子计算机,采用了广泛的硬件重新设计,能够实现卓越性能。技术栈的增强包括新的低温硬件设计、量子比特电路布局的全面改进、通过交替偏压辅助退火实现精确的量子比特频率定位,以及具有精确控制的灵活门架构。照片来源:Drew Bird Photography
Ankaa-3 具有广泛的硬件 redesign,使其性能卓越。技术栈中的增强包括新的低温硬件设计、量子比特电路布局的彻底改造、使用交替偏置辅助退火的精确量子比特频率定位以及灵活的门架构和精确控制。Ankaa-3 已实现 99.5% 的中位量子比特门保真度。
加州伯克利,2024年12月23日(环球新闻通讯社)-- Rigetti计算公司(纳斯达克代码:RGTI)("Rigetti"或"公司"),作为全栈量子-经典计算的先驱,今天宣布其84量子比特Ankaa-3系统的公开发布。Ankaa-3是Rigetti最新的旗舰量子计算机,采用了广泛的硬件重新设计,能够实现卓越性能。Rigetti还庆祝Ankaa-3在两个量子比特门保真度方面的重大里程碑:在2024年成功将错误率减半,实现了99.0%的中位数iSWAP门保真度,同时展示了99.5%的中位数fSim门保真度。
Ankaa-3 现在可以通过 Rigetti 量子云服务平台(QCS)提供给其合作伙伴,并将在2025年第一季度推出到亚马逊 Braket 和微软 Azure。用户将能够使用这些更高保真度和通用的 iSWAP 门进行广泛的算法研究,门的中位时间为 72 纳秒。更快(中位 56 纳秒)、更专业的 fSim 门对于特定算法(例如随机电路采样)十分有用,正如最近在谷歌的 Willow 系统上展示的那样。
Ankaa-3 系统继续采用 Rigetti 可扩展的行业领先芯片架构,具备 3D 信号传输,同时对关键技术进行了重大增强。利用公司全栈专业技术和内部量子铸造能力,Ankaa-3 展示了 Rigetti 提供日益高性能量子计算机的能力。
公司的重点是提高量子比特的保真度,从而在科技堆栈中实现了增强:
全新的低温硬件设计 - 在冰箱最低温度阶段减少金属数量,提高了效率并降低了每个量子比特的成本。卓越的热化和磁性/环保母基屏蔽也改善了系统性能。这种新设计使扩展到数千个量子比特成为可能。
改进的量子比特芯片 - Rigetti对其量子比特芯片进行了彻底改造,提升了相干性。通过与费米实验室领导的超导量子材料与系统中心(SQMS)的合作,Rigetti实施了一种金属沉积方法,用于量子比特电路,具有更高的T1基线 -- 这表示量子比特的寿命。此外,电路布局经过优化,以最小化量子比特损耗,并利用新的高相干性工艺。
具有交替偏置辅助退火(ABAA)的约瑟夫森结制造 - Ankaa-3芯片具有Rigetti Ankaa系列芯片架构的特征,采用量子比特的方格结构和可调耦合器。这款84量子比特芯片的约瑟夫森结采用Rigetti的新型ABAA技术制造。ABAA允许精确的量子比特频率定位,从而实现更好地执行两量子比特门并提高产量,这两者都助于提高保真度。
精确控制和灵活的门架构 - Rigetti在支撑其量子处理单元(QPUs)的控制技术上进行了大量投资。对量子比特和可调耦合器频率的芯片级优化减少了不必要的量子比特相互作用,实时硬件脉冲补偿产生了更低的非相干误差的门。Rigetti还开发了一种强大的校准过程,用于高度表达的平方根-iSWAP类门,同时解决了与其实际使用相关的一些编译挑战,从而形成了一组以nQA为导向的门,显著降低了误差率。
“凭借大约22500万美元的现金、现金等价物和可销售投资,无债务,我们非常有信心实现我们的路线图和绩效目标。Ankaa-3的卓越表现加强了我们在超导量子计算领域的领导地位 -- 我们相信,这是一种高性能量子计算机的胜出模式,因为它们具有许多优势,包括快速的门速度和成熟的制造工艺,”Rigetti首席执行官Subodh Kulkarni博士说。
"我们的团队在技术栈的各个方面,努力工作,以引入新的创新方法来提高我们系统的性能。随着我们继续向容错的旅程迈进,我们正在构建前所未见的具有能力的计算系统," Rigetti首席技术官David Rivas表示。"在Rigetti,我们与合作伙伴紧密合作,致力于寻找将这些系统投入实际应用的方法。"
Rigetti计划在2025年推出其模块化系统架构的下一代,同时继续提高保真度。到2025年年中,公司预计将发布一个基于四个9-qubit芯片拼接在一起的36量子比特系统,目标是将错误率降低至当前水平的2倍。到2025年底,公司预计将发布一个超过100量子比特的系统,目标是将错误率降低至当前水平的2倍。
关于Rigetti
Rigetti是全栈量子计算的先驱。自2017年以来,该公司通过其Rigetti量子云服务平台运营云端量子计算机,服务于全球企业、政府和研究客户。2021年,Rigetti开始销售本地量子计算系统,量子比特数在24到84之间,支持国家实验室和量子计算中心。Rigetti的9量子比特Novera量子处理器于2023年推出,支持更广泛的研发社区,并为客户现有的低温和控制系统设计了高性能的本地量子处理器。该公司的专有量子经典基础设施与公共和私有云实现高性能集成,以支持实际的量子计算。Rigetti开发了行业首款多芯片量子处理器,旨在构建可扩展的量子计算系统。该公司在行业首个专用和集成的量子设备制造设施Fab-1内自主设计和制造其芯片。