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CCP-QC: Collaborative Computational Project - Quantum Computinge-

CCP-QC: Collaborative Computational Project - Quantum Computinge-
CCP-QC:协作计算项目 - 量子计算-
批准号:
EP/T026715/1
负责人:
Vivien Kendon
金额:
$20.82万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2020
资助国家:
英国
项目状态:
已结题
起止时间:
2020 至 --

项目摘要

项目成果

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中文摘要
翻译
CCP-QC是一个将计算科学家与量子计算科学家和工程师联系起来的网络,旨在开发量子计算机的首批有用应用。作为更广泛的量子技术发展的一部分,量子计算有望从根本上加快计算速度,其中包括更安全的通信、更敏感的测量和成像。我们的传统计算机,包括手机、现代汽车和互联网上的计算机,都是基于硅半导体技术。经过半个世纪的发展,硅半导体计算机芯片在过去的十年里已经达到了极限。更快的计算需要更多的计算机,而这些计算机使用更多的电力,因此这种增长是有限的。量子计算使用一种不同的逻辑,使某些类型的问题的计算速度更快。工程上的挑战是艰巨的,我们仍然处于相当于20世纪60年代早期第一批半导体芯片的阶段。早期的量子计算机已经可用:下一步是开发适合这种硬件功能的应用程序,使我们能够利用它们提供的机会来加速我们的计算。在材料、化学、物理、生物和工程领域,一组重要的计算任务是由协作计算项目(CCPs)支持的社区开发的。CCP- qc将在这些CCP和量子计算社区之间建立网络,使CCP社区能够通过使用量子计算机来增强其计算能力。为此,它将组织联合会议,举办培训日,向计算科学家传授量子计算知识,支持小型项目,开发早期量子计算硬件的原理验证代码和演示,并提供早期量子计算应用的在线信息资源。CCP-QC将与新的国家量子计算中心对接,该中心将于2020年4月启动,并以牛津郡的STFC哈维尔校区为基础。CCP-QC将使量子计算硬件提供商能够通过对计算科学界重要的实际问题对其硬件进行测试。因此,这些测试的结果可以影响量子计算硬件的发展,从而更快地开发有用的应用程序,这些应用程序可以从早期量子硬件中提取最佳优势。CCP社区开展的模拟涵盖了广泛的重要应用,从智能材料(例如,更好的太阳能电池和电池)到药物设计(生物分子模拟)。因此,CCP-QC将有助于在许多具有广泛科学、社会和经济效益的重要应用中发展更快的计算方法。
英文摘要
CCP-QC is a network linking computational scientists with quantum computing scientists and engineers, to develop some of the first useful applications of quantum computers.Quantum computing is promising fundamentally faster computation as part of broader quantum technology development that includes more secure communications, and more sensitive measurements and imaging.Our conventional computers, including those in mobile phones, modern cars, and powering the internet, are based on silicon semicoductor technology. After half a century of growth, silicon semiconductor computer chips have been at the limit of what they can do for the past decade. Faster computing requires more computers, which use more electricity and this growth is thus limited.Quantum computing uses a different logic, enabling much faster computing for some types of problems.The engineering challenges are formidable, and we are still at the stage equivalent to the first semiconductor chips in the early 1960s. Early quantum computers are already available: developing applications to suit the capabilities of this hardware is the next step, to enable us to take advantage of the opportunities they offer to speed up our computations.An important set of computational tasks in materials, chemistry, physics, biology, and engineering is developed by communities supported by collaborative computational projects (CCPs).CCP-QC will network across these CCPs and the quantum computing community, to enable the CCP communities to enhance their computations by using quantum computers.It will do this by organising joint meetings, holding training days to teach computational scientists about quantum computing, supporting small projects to develop proof-of-principle code and demonstrations on early quantum computing hardware, and providing an online information resource on early quantum computing applications.CCP-QC will interface with the new National Quantum Computing Centre, to be launched in April 2020 and based on the STFC Harwell campus in Oxfordshire. CCP-QC will enable quantum computing hardware providers to have their hardware tested with real problems of importance to the computational science communities.The outcomes of such tests can thus influence the development of quantum computing hardware, leading to faster development of useful applications that are adapted to extract the best advantage from the early quantum hardware.The simulations carried out by the CCP communities cover a wide range of important applications, from smart materials (e.g., better solar cells and batteries) to drug design (bio-molecular simulation).CCP-QC will thus contribute to the development of faster computational methods in many important applications with wide-ranging scientific, social and economic benefits.
期刊论文(10)
专著(0)
科研奖励(0)
会议论文
DOI: 10.3389/frqst.2023.1128576
发表时间: 2022-12
期刊:
影响因子: --
作者: [Rhonda Au-Yeung;N. Chancellor;Pascal Halffmann]
通讯作者: Rhonda Au-Yeung;N. Chancellor;Pascal Halffmann
DOI: 10.1103/physrevresearch.4.l022017
发表时间: 2022-04
期刊: Physical Review Research
影响因子: 4.2
作者: [O. Abah;G. De Chiara;M. Paternostro;R. Puebla]
通讯作者: O. Abah;G. De Chiara;M. Paternostro;R. Puebla
DOI: 10.22331/q-2023-03-02-933
发表时间: 2022-02
期刊: ArXiv
影响因子: --
作者: [Martin R. Albrecht;Milos Prokop;Yixin Shen;P. Wallden]
通讯作者: Martin R. Albrecht;Milos Prokop;Yixin Shen;P. Wallden
An evolving objective function for improved variational quantum optimisation
用于改进变分量子优化的演化目标函数
DOI: 10.48550/arxiv.2105.11766
发表时间: 2021
期刊:
影响因子: --
作者: [Kolotouros I]
通讯作者: Kolotouros I
共 7 条
    Quantum Enhanced and Verified Exascale Computing - QEVEC
    • 批准号:
      EP/W00772X/1
    • 项目类别:
      Research Grant
    • 资助金额:
      $129.45万
    • 财政年份:
      2021
    • 负责人:
      Vivien Kendon
    • 依托单位:
    CCP-QC: Collaborative Computational Project - Quantum Computinge-
    • 批准号:
      EP/T026715/2
    • 项目类别:
      Research Grant
    • 资助金额:
      $17.85万
    • 财政年份:
      2021
    • 负责人:
      Vivien Kendon
    • 依托单位:
    Quantum Enhanced and Verified Exascale Computing - QEVEC
    • 批准号:
      EP/W00772X/2
    • 项目类别:
      Research Grant
    • 资助金额:
      $128.39万
    • 财政年份:
      2021
    • 负责人:
      Vivien Kendon
    • 依托单位:
    Hybrid quantum and classical computation: exploiting the best of both paradigms
    • 批准号:
      EP/L022303/1
    • 项目类别:
      Fellowship
    • 资助金额:
      $133.5万
    • 财政年份:
      2014
    • 负责人:
      Vivien Kendon
    • 依托单位:
    国内基金
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    • 批准号:
      82370546
    • 项目类别:
      面上项目
    • 资助金额:
      49万元
    • 批准年份:
      2023
    • 负责人:
      刘祖强
    • 依托单位:
    新咪唑基类QC抑制剂发现及抗阿尔兹海默症作用研究
    • 批准号:
    • 项目类别:
      省市级项目
    • 资助金额:
      10.0万元
    • 批准年份:
      2023
    • 负责人:
      吴海强
    • 依托单位:
    IBD致上皮内瘤变中REG4+C1QC-巨噬细胞调控OLFM4+SOX9+异型干细胞化生及不典型增生机制研究
    • 批准号:
      82100539
    • 项目类别:
      青年科学基金项目(C类)
    • 资助金额:
      30.0万元
    • 批准年份:
      2021
    • 负责人:
      林海珊
    • 依托单位: