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IBM Launches Its Most Advanced Quantum Computers, Fueling New Scientific Value and Progress Towards Quantum Advantage

IBM Launches Its Most Advanced Quantum Computers, Fueling New Scientific Value and Progress Towards Quantum Advantage

IBM推出其最先进的量子计算机,推动新的科学价值和朝着量子优势的进展
IBM Corp ·  11/13 00:00

YORKTOWN HEIGHTS, N.Y., Nov. 13, 2024 /PRNewswire/ -- Today at its inaugural IBM Quantum Developer Conference, IBM (NYSE: IBM) announced quantum hardware and software advancements to execute complex algorithms on IBM quantum computers with record levels of scale, speed, and accuracy.

纽约州约克敦高地,2024年11月13日 /PRNewswire/ — 今天在首届IBM量子开发者大会上,IBM(纽约证券交易所代码:IBM)宣布了量子硬件和软件进展,将在IBM量子计算机上以创纪录的规模、速度和准确度执行复杂算法。

IBM Quantum Heron, the company's most performant quantum processor to-date and available in IBM's global quantum data centers, can now leverage Qiskit to accurately run certain classes of quantum circuits with up to 5,000 two-qubit gate operations. Users can now use these capabilities to expand explorations in how quantum computers can tackle scientific problems across materials, chemistry, life sciences, high-energy physics, and more.

IBM Quantum Heron是该公司迄今为止性能最高的量子处理器,可在IBM的全球量子数据中心使用。它现在可以利用Qiskit通过多达5,000个二量子位门运算来精确运行某些类别的量子电路。用户现在可以使用这些功能来扩大对量子计算机如何解决材料、化学、生命科学、高能物理等领域的科学问题的探索。

This continues the achievement of milestones on IBM's Quantum Development Roadmap, and further advances the era of quantum utility as IBM and its partners progress towards quantum advantage and IBM's advanced, error-corrected system planned for 2029.

这延续了IBM量子开发路线图上取得的里程碑式成就,并随着IBM及其合作伙伴在量子优势和计划于2029年推出的先进的错误校正系统方面取得进展,进一步推动了量子实用时代。

The combined improvements across IBM Heron and Qiskit can execute certain mirrored kicked Ising quantum circuits of up to 5,000 gates, which is nearly twice the number of gates accurately run in IBM's 2023 demonstration of quantum utility. This work further extends the performance of IBM's quantum computers beyond the capabilities of brute-force classical simulation methods. The 2023 utility experiment, published in Nature, demonstrated the speed results in terms of time to process, per data point, which totaled 112 hours. The same experiment, using the same data points, was run on the latest IBM Heron processor and can be completed in 2.2 hours, which is 50 times faster.

IBM Heron和Qiskit的综合改进可以执行某些镜像启动的Ising量子电路,最多可达5,000个门,这几乎是IBM在2023年量子效用演示中准确运行的门数的两倍。这项工作进一步扩展了IBM量子计算机的性能,使其超出了蛮力经典仿真方法的能力。发表在《自然》杂志上的2023年实用程序实验展示了按每个数据点计算的速度结果,总计112小时。同样的实验使用相同的数据点,在最新的IBM Heron处理器上运行,可以在2.2小时内完成,速度快50倍。

IBM has further evolved Qiskit into the world's most performant quantum software to allow developers to more easily build complex quantum circuits with stability, accuracy, and speed. This is evidenced by results gathered and published on arXiv.org using Benchpress, an open-source benchmarking tool which IBM used to measure Qiskit across 1,000 tests, largely from third parties, and found it to be the highest-performing, most reliable quantum software development kit against other selected platforms.

IBM 进一步将 Qiskit 发展成为世界上性能最高的量子软件,使开发人员能够更轻松地构建具有稳定性、准确性和速度的复杂量子电路。使用Benchpress在Arxiv.org上收集和发布的结果证明了这一点。Benchpress是一种开源基准测试工具,IBM使用该工具对Qiskit进行了1,000次测试,主要来自第三方,并发现它是与其他选定平台相比性能最高、最可靠的量子软件开发套件。

"Advances across our hardware and Qiskit are enabling our users to build new algorithms in which advanced quantum and classical supercomputing resources can be knit together to combine their respective strengths," said Jay Gambetta, Vice President, IBM Quantum. "As we advance on our roadmap towards error-corrected quantum systems, the algorithms discovered today across industries will be key to realizing the potential to solve new problems realized through the convergence of QPUs, CPUs, and GPUs."

IBM Quantum副总裁杰伊·甘贝塔表示:“我们的硬件和Qiskit的进步使我们的用户能够构建新的算法,在这些算法中,先进的量子和经典超级计算资源可以结合各自的优势。”“随着我们在实现纠正量子系统的路线图上前进,今天在各行各业发现的算法将是实现解决通过QPU、CPU和GPU融合实现的新问题的潜力的关键。”

New Software Tools to Advance Development of Next-Generation Algorithms

推进下一代算法开发的新软件工具

The IBM Quantum Platform is further expanding options with new Qiskit services such as generative AI-based capabilities and software from IBM partners, allowing a growing network of experts across industries to build next-generation algorithms for scientific research.

IBM Quantum Platform正在通过新的Qiskit服务(例如IBM合作伙伴提供的基于人工智能的生成功能和软件)进一步扩展选项,从而使越来越多的跨行业专家网络能够为科学研究构建下一代算法。

This includes tools such as the Qiskit Transpiler Service to power the efficient optimization of quantum circuits for quantum hardware with AI; Qiskit Code Assistant to help developers generate quantum code with IBM Granite-based generative AI models; Qiskit Serverless to run initial quantum-centric supercomputing approaches across quantum and classical systems; and the IBM Qiskit Functions Catalog to make services available from IBM, Algorithmiq, Qedma, QunaSys, Q-CTRL, and Multiverse Computing for capabilities such as reducing the performance management of quantum noise, as well as abstracting away the complexities of quantum circuits to simplify the development of quantum algorithms.

这包括使用人工智能推动量子硬件量子电路高效优化的 Qiskit Transpiler 服务;帮助开发人员使用基于 IBM Granite 的生成式 AI 模型生成量子代码的 Qiskit Code Assistant;用于跨量子和经典系统运行初始量子中心的超级计算方法的 Qiskit Serverless;以及提供来自 IBM、Algorithmiq、Qedma、Qunas的服务的 IBM Qiskit 函数目录 YS、Q-CTRL 和多元宇宙计算用于诸如减少性能管理之类的功能量子噪声,以及抽象出量子电路的复杂性以简化量子算法的开发。

"Algorithmiq's tensor error network mitigation algorithm (TEM), available through the IBM Qiskit Functions Catalog, offers state-of-the-art error mitigation for circuits at utility scale by leveraging steps towards quantum-centric supercomputing approaches, delivering the fastest quantum runtime we've yet offered to users," said Matteo Rossi, CTO, Algorithmiq. "With the recent advancements we've made to combine quantum computers with post-processing on GPUs, we are pushing TEM's capabilities to support circuits with up to 5,000 entangled quantum gates – a milestone for scaling quantum experiments and tackling complex problems. This could open the door to quantum simulations and computations previously constrained by noise limitations."

Algorithmiq首席技术官Matteo Rossi表示:“Algorithmiq的张量误差网络缓解算法(TEM)可通过IBM Qiskit Functions目录获得,通过利用向量子中心的超级计算方法采取的措施,为公用事业规模的电路提供最先进的错误缓解方法,为用户提供迄今为止最快的量子运行时间。”“随着我们最近在将量子计算机与GPU的后处理相结合方面取得的进展,我们正在推动TEM支持具有多达5,000个纠缠量子门的电路的能力,这是扩大量子实验和解决复杂问题的里程碑。这可能会为以前受噪声限制限制的量子模拟和计算打开大门。”

"Progress across IBM quantum hardware and software are instrumental to Qedma's mission to build services that will allow our users to run the longest and most complex quantum circuits," said Dorit Aharonov, Chief Scientific Officer, Qedma. "Combined with our own achievements in error mitigation, which we offer via Qedma's service in the IBM Qiskit Functions Catalog, we look forward to furthering our mission of enabling global users to build algorithms with today's quantum systems – and to achieve increasingly accurate results of scientific value."

Qedma首席科学官多丽特·阿哈罗诺夫表示:“IBM量子硬件和软件方面的进展对Qedma的使命至关重要,即提供服务,使我们的用户能够运行最长和最复杂的量子电路。”“结合我们自己通过IBM Qiskit Functions目录中的Qedma服务在减少错误方面取得的成就,我们期待进一步推进我们的使命,即使全球用户能够使用当今的量子系统构建算法,并获得越来越准确的科学价值结果。”

Qiskit Fuels Quantum and Classical Integration Towards Future of Computing

Qiskit 推动量子和经典整合走向未来的计算

As the next evolution of high-performance computing, IBM's vision of quantum-centric supercomputing aims to integrate advanced quantum and classical computers executing parallelized workloads to easily break apart complex problems with performant software, allowing each architecture to solve parts of an algorithm for which it is best suited. Such software is being designed to seamlessly and quickly knit problems back together, allowing algorithms to be run that are inaccessible or difficult for each computing paradigm on its own.

作为高性能计算的下一次演变,IBM对以量子为中心的超级计算的愿景旨在整合执行并行工作负载的高级量子计算机和传统计算机,以使用高性能软件轻松解决复杂的问题,从而使每种架构都能解决最适合的算法部分。此类软件旨在无缝快速地将问题重新组合在一起,从而允许运行每种计算模式本身无法访问或困难的算法。

RIKEN, a national scientific research institute in Japan, and Cleveland Clinic, a leading academic medical center and biomedical research institution with an on-site and utility-scale IBM Quantum System One, are exploring algorithms for electronic structure problems that are fundamental to chemistry.

日本国家科学研究机构理研和领先的学术医学中心和生物医学研究机构克利夫兰诊所正在探索作为化学基础的电子结构问题的算法,后者拥有现场和公用事业规模的IBM Quantum System One。

These initiatives represent the first steps towards quantum-centric supercomputing approaches to realistically model complex chemical and biological systems, a task historically believed to require fault-tolerant quantum computers.

这些举措是朝着以量子为中心的超级计算方法迈出的第一步,以对复杂的化学和生物系统进行逼真建模,历史上人们认为这项任务需要容错量子计算机。

Early examples of these types of workflows are methods based on parallel classical processing of individual samples from quantum computers. Building on prior techniques, such as QunaSys's QSCI method, IBM and RIKEN researchers have performed sample-based quantum diagonalizations in quantum-centric supercomputing environments, which make use of quantum hardware to accurately model the electronic structure of iron sulfides, a compound present widely in nature and organic systems.

这些工作流程的早期例子是基于对量子计算机单个样本进行并行经典处理的方法。在先前技术(例如QuNasys的QSCI方法)的基础上,IBM和RIKEN的研究人员在以量子为中心的超级计算环境中进行了基于样本的量子对角化,利用量子硬件对硫化铁的电子结构进行精确建模,硫化铁是一种广泛存在于自然和有机系统中的化合物。

Now available as a deployable Qiskit service, this same technique is being leveraged by Cleveland Clinic to explore how it could be used to implement quantum-centric simulations of noncovalent interactions: bonds between molecules that are essential to many chemical, biological, and pharmaceutical science processes.

Cleveland Clinic现在以可部署的Qiskit服务形式提供同样的技术来探索如何使用它来实现以量子为中心的非共价相互作用模拟:分子之间的键对许多化学、生物和药物科学过程至关重要。

"This research is an example of what makes our research partnership successful – bringing together IBM's next-generation technologies with Cleveland Clinic's world-renowned expertise in healthcare and life sciences," said Lara Jehi, MD, Chief Research Information Officer at Cleveland Clinic. "Together, we are pushing through traditional scientific boundaries using cutting-edge technology such as Qiskit to advance research and find new treatments for patients around the globe."

克利夫兰诊所首席研究信息官拉拉·杰希医学博士说:“这项研究是使我们的研究合作取得成功的一个例子——将IBM的下一代技术与克利夫兰诊所享誉世界的医疗保健和生命科学专业知识相结合。”“我们正在共同使用Qiskit等尖端技术突破传统科学界限,推动研究,为全球患者寻找新的治疗方法。”

"With our partners at IBM, we were able to leverage their advanced quantum computing electronic structure algorithm to study – for the first time – intermolecular interactions on the on-site IBM Quantum System One at Cleveland Clinic, which are important for potential future applications in drug discovery and design," said Kennie Merz, PhD and quantum molecular scientist at Cleveland Clinic.

克利夫兰诊所博士兼量子分子科学家肯尼·默兹说:“与我们在IBM的合作伙伴一起,我们得以利用他们先进的量子计算电子结构算法,首次在克利夫兰诊所的现场IBM Quantum System One上研究分子间相互作用,这对于未来药物发现和设计的潜在应用非常重要。”

"The RIKEN Center for Computational Science (R-CCS) is conducting the Japan High Performance Computing-Quantum (JHPC-Quantum) project, which aims to build a quantum-HPC hybrid computing platform by integrating our supercomputer, Fugaku, with an on-premises IBM Quantum System Two powered by an IBM Quantum Heron processor. In the era of quantum utility, we will strongly support the initiative's goal of demonstrating quantum-centric supercomputing approaches by using our platform as a first step towards this new computing architecture," said Mitsuhisa Sato, the director of Quantum-HPC Hybrid Platform Division, RIKEN Center for Computational Science.

“理研计算科学中心(R-CCS)正在开展日本高性能计算量子(JHPC-Quantum)项目,该项目旨在通过将我们的超级计算机Fugaku与由IBM Quantum Heron处理器提供支持的本地IBM Quantum System Two集成来构建量子-HPC混合计算平台。在量子实用时代,我们将大力支持该计划的目标,即使用我们的平台作为迈向这种新计算架构的第一步,展示以量子为中心的超级计算方法。” 理研计算科学中心量子-HPC混合平台部主任佐藤光久说。

Additionally, Rensselaer Polytechnic Institute is using Qiskit tools to take initial steps to build IBM's first realization of quantum-centric supercomputing on a university campus. With performant software, RPI and IBM are aiming to successfully connect workloads across the AiMOS classical supercomputer and IBM Quantum System One, both located on RPI's campus, into a single computational environment managed by a standard high-performance computing resource manager.

此外,伦斯勒理工学院正在使用Qiskit工具采取初步措施,在大学校园内构建IBM首次实现的以量子为中心的超级计算。借助高性能软件,RPI和IBM的目标是成功地将位于RPI园区的AimOS经典超级计算机和IBM Quantum System One上的工作负载连接到由标准高性能计算资源管理器管理的单一计算环境中。

"Since unveiling IBM Quantum System One on the RPI campus earlier this year, we have taken steps toward another significant first by starting the work to link the quantum system and our AiMOS supercomputer," said Martin A. Schmidt, Ph.D., president of RPI. "This moment is a testament to our longstanding partnership with IBM, and, like the pairing of quantum computing and supercomputing, our two institutions together will drive exciting breakthroughs in the years to come."

RPI总裁马丁·施密特博士说:“自今年早些时候在零售物价指数园区推出IBM Quantum System One以来,我们已经朝着又一个重要的第一步迈进,开始了连接量子系统和我们的AimOS超级计算机的工作。”“这一刻证明了我们与IBM的长期合作伙伴关系,就像量子计算和超级计算的配对一样,我们这两个机构的共同将在未来几年推动激动人心的突破。”

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关于 IBM

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IBM 是全球混合云和人工智能以及咨询专业知识的领先提供商。我们帮助超过175个国家的客户利用其数据中的见解,简化业务流程,降低成本并在其行业中获得竞争优势。金融服务、电信和医疗保健等关键基础设施领域的 4,000 多个政府和企业实体依赖 IBM 的混合云平台和 Red Hat OpenShift 来快速、高效、安全地影响其数字化转型。IBM 在人工智能、量子计算、特定行业的云解决方案和咨询方面的突破性创新为我们的客户提供了开放而灵活的选择。所有这些都得到 IBM 对信任、透明度、责任、包容性和服务的长期承诺的支持。访问以获取更多信息。

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