Trapped ions for quantum information processing
Trapped ions for quantum information processing
批准号:
2321912
负责人:
金额:
$0.0万
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2020
资助国家:
英国
项目状态:
已结题
起止时间:
2020 至 --
中文摘要
用于限制原子粒子的微型制造设备将在未来几年成为一系列量子仪器的关键核心部件。这些设备的应用是在原子钟和传感器等仪器中,用于精确定位、导航和计时。此外,这些芯片级设备还将用于量子信息科学和技术,例如作为量子网络中的处理器或节点。总体而言,应用范围从基础科学的实验室研究到实用的量子仪器。英国国家物理实验室开发了新型芯片规模的离子陷阱和原子陷阱,这些陷阱是使用先进的微制造技术制造的。第二代具有附加功能的高级设备正在测试中;这些设备将与一系列囚禁离子相干控制技术一起用于研究纠缠系统及其在量子计量学中的应用。学生将专注于芯片级微陷阱中离子的相干控制和量子纠缠。它位于一个涉及量子物理、光子学和微制造的多学科界面上,立即在量子技术中得到应用。学生将直接为资助的研究项目做出贡献,并受益于使用NPL最先进、设备齐全的实验室设施。
英文摘要
Microfabricated devices for confining atomic particles are set to feature as essential core components in a range of quantum-enabled instrumentation during the coming years. Applications of these devices are in instruments such as atomic clocks and sensors, for use in precision positioning, navigation and timing. Additionally, these chip-scale devices will also be used in quantum information science and technology, for example as a processor or a node in a quantum network. Overall, applications range from laboratory research in fundamental science to practical quantum instruments.The UK's National Physical Laboratory has developed novel chip-scale ion traps and atom traps, which are made using advanced microfabrication techniques. A second generation of superior devices with added functionality is being tested now; these will be used, together with a range of techniques in the coherent control of trapped ions, to research entangled systems and their application to quantum metrology.The studentship will focus on coherent control and quantum entanglement of ions in chip-scale microtraps. It sits at a multidisciplinary interface involving quantum physics, photonics and microfabrication, with immediate applications in quantum technology. The student will contribute directly to funded research programmes and benefit from access to state-of-the-art, well-equipped, laboratory facilities at NPL.
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会议论文
国内基金
海外基金
双星中性原子探测图像在地磁暴期间的时序演化过程反演分析
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批准号:40974100
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项目类别:面上项目
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资助金额:45.0万元
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批准年份:2009
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负责人:路立
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依托单位: