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Quantum spins in molecules

Quantum spins in molecules
分子中的量子自旋
批准号:
1948479
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2017
资助国家:
英国
项目状态:
已结题
起止时间:
2017 至 --
关键词:

项目摘要

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中文摘要
翻译
分子定义了工程对象执行特定功能的最小尺度。这也是量子特性主导行为的尺度。该项目将探索几种实验方法来利用分子(特别是它们的自旋)作为分子电子和量子器件的基本组成部分。短期影响将是学术性的,产生新的基础科学成果和实验方法。从长远来看,我们的新方法可能提供商业上可行的分子器件技术的路线。使用脉冲电子自旋共振:(a)优化和帮助优化分子自旋系统中的自旋相干时间;(B)研究多自旋分子中的自旋间相互作用,并优化多量子位量子逻辑运算;(c)执行双量子位纠缠运算,并使用密度矩阵层析成像验证结果;(d)研究分子自旋哈密尔顿参数对外加电场的依赖性,并确定电场是否可用于操纵分子自旋量子比特。2.参与EPSRC项目EP/P000479/1“用DNA分子组装自旋电子电路”:(a)参与分子器件的设计(由其他项目参与者组装);(B)使用洁净室纳米光刻技术与组装的分子器件进行电接触;(c)在低温和高磁场下对接触的分子器件进行电输运实验。研究方法的新奇:脉冲电子自旋共振(支撑目标1)是探测磁性分子系统性质的既定方法。研究可以传播多量子比特量子门的分子内相互作用以新颖的方式使用已建立的脉冲序列。执行两个量子比特门及其验证将是非常新颖的。测量哈密顿参数的电场灵敏度是一种成熟的技术,但将其应用于自旋量子比特是非常新颖的。支撑目标2的方法是全新的;建立使用DNA组装分子电子器件是这一研究领域的一个全新方向。符合EPSRC的战略和研究领域:该项目福尔斯以下EPSRC研究领域:物理科学(生物物理学和软物质物理学,凝聚态:电子结构,凝聚态:磁性和磁性材料);量子技术;制造未来。
英文摘要
Molecules define the smallest scale for engineering objects to perform particular functions. This is also the scale on which quantum properties dominate the behaviour. This project will explore several experimental approaches to harnessing molecules (and in particular their spins) as the basic components of molecular electronic and quantum devices. The short-term impact will be academic, generating new basic science results and experimental methodologies. In the longer term, our new approaches may offer routes to commercially viable molecular device technologies.Aims and Objectives: 1. Use pulsed electron spin resonance to: (a) characterise and help optimise spin coherence times in molecular spin systems; (b) investigate inter-spin interactions in multi-spin molecules and optimise for mediating multi-qubit quantum logic operations; (c) perform a two-qubit entangling operation and verify the result using density matrix tomography; (d) investigate the dependence of molecular spin Hamiltonian parameters on externally-applied electric fields and determine whether electric fields can be used to manipulate molecular spin qubits. 2. Participate in EPSRC project EP/P000479/1 "Molecular assembly of spintronic circuits with DNA": (a) participate in design of molecular devices (to be assembled by others project participants); (b) use cleanroom-based nanolithography techniques to make electrical contact to assembled molecular devices; (c) perform electrical transport experiments on the contacted molecular devices at low temperatures and at high magnetic fields. Novelty of the research methodology: Pulsed electron spin resonance (underpinning objective 1) is an established methodology for probing the properties of magnetic molecular systems. Investigating intra-molecular interactions that could propagate multi-qubit quantum gates uses established pulse sequences in novel ways. Performing a two-qubit gate and its verification will be highly novel. Measuring electric field sensitivity of Hamiltonian parameters is an established technique, but applying it to spin qubits is highly novel. The methodology underpinning objective 2 is entirely novel; establishing the use of DNA to assemble molecular electronic devices is a completely new direction for this field of research. Alignment to EPSRC's strategies and research areas: This project falls within the following EPSRC research areas: Physical sciences (biophysics and soft matter physics, condensed matter: electronic structure, condensed matter: magnetism and magnetic materials); Quantum technologies; Manufacturing the future.
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国内基金
海外基金
多孔超分子离子骨架材料(SPINs):新型有机多孔材料的实用制备及温室气体吸附研究
  • 批准号:
    21772013
  • 项目类别:
    面上项目
  • 资助金额:
    64.0万元
  • 批准年份:
    2017
  • 负责人:
    黄木华
  • 依托单位: