RUI: Trapped Ion Phononics: Thermal Rectification and Controlled Heat Flow in 1D Ion Chains
RUI: Trapped Ion Phononics: Thermal Rectification and Controlled Heat Flow in 1D Ion Chains
批准号:
2207957
负责人:
Charlie Doret
金额:
$23.12万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-07-15 至 2025-06-30
中文摘要
自然界中的能量流动有多种形式:电流、瀑布上的瀑布、来自遥远恒星的光,或者热量泄漏到冷却器中破坏野餐。 其中,对我们日常生活最具实际意义的机制是热传导和电传导。 一个世纪的技术进步,如电子二极管和晶体管的发展,使人类对电流有了精确的控制,并推动了今天的信息革命。 相比之下,我们对热流的控制--控制着美国90%的能源生产--仍然处于起步阶段,但掌握对热流的控制可以实现从热逻辑门到提高光伏发电效率的应用。 该项目的重点是开发一个热二极管的原理验证示例,热二极管是使用激光冷却离子链控制热流的基本构建模块之一。 此类链还将使量子和经典区域交叉处的介观热导率的研究成为可能,这与理解微观器件中的热流相关。 这项工作将在一所本科院校进行;学生将参与实验的各个方面,并在期刊文章和科学会议上发表论文,所有这些都将为未来的科学职业提供极好的培训。这项工作的中心目标是展示由共同捕获的钙和锶离子形成的双离子热整流器。 通过将两个离子耦合到由激光冷却形成的不同有效温度的热库,热流将从“热”离子流向“冷”离子。 然后可以通过基于激光的快速测温技术利用离子的暗共振从离子中提取热流。 校正的标志是在储层交换作用下热流的不对称性。 较长的双物种链与可控地引入的障碍,也将使研究的热梯度的发病整个链使用类似的技术。 所有这些工作都将为大量本科生在其教育的各个阶段提供研究培训,特别强调在本科早期吸引不同群体的学生。该奖项反映了NSF的法定使命,并被认为值得通过使用基金会的智力价值和更广泛的影响审查标准进行评估来支持。
英文摘要
Energy flow in the natural world takes many forms: electrical currents, water cascading over a cataract, light arriving from distant stars, or heat leaking into a cooler to ruin one's picnic lunch. Of these, the mechanisms of greatest practical importance for our daily lives are thermal and electrical conduction. A century of technological advances, such as the development of electrical diodes and transistors, have given humanity exquisite control over electrical currents and driven today's information revolution. In contrast, our command of thermal currents - which govern 90% of energy production in the United States - remains in its infancy, yet mastering control over thermal currents could enable applications ranging from thermal logic gates to improved efficiency from photovoltaic power generation. This project focuses on developing a proof-of-principle example of a thermal diode, one of the basic building blocks for controlling thermal currents, using laser-cooled ion chains. Such chains will also enable the study of mesoscopic thermal conductivity at the crossover between quantum and classical regimes, relevant for understanding thermal currents in microscopic devices. The work will take place at an undergraduate institution; students will be involved in all aspects of the experiments and their presentation in journal articles and at scientific conferences, all of which will provide superb training for future careers in the sciences.The central goal of this work will be to demonstrate a two-ion thermal rectifier formed from co-trapped calcium and strontium ions. By coupling the two ions to thermal reservoirs at different effective temperatures formed by laser cooling, a thermal current will flow from the `hot' to the `cold' ions. The thermal current can then be extracted from the ions via laser-based fast thermometry techniques utilizing the ions' dark resonances. The sign of rectification will be an asymmetry in the thermal current under exchange of the reservoirs. Longer dual-species chains with controllably introduced disorder will also enable the study of the onset of thermal gradients across the chain using similar techniques. All of this work will provide research training to a large number of undergraduate students at all stages of their education, with a special emphasis on engaging a diverse group of students early in their undergraduate years.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
RUI: Measuring Nanoscale Thermal Transport with Trapped Ions
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批准号:1707822
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项目类别:Continuing Grant
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资助金额:$16.65万
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财政年份:2017
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负责人:Charlie Doret
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依托单位:
国内基金
海外基金
粤西海域CTW(Coastal Trapped Wave)特征分析与数值模拟研究
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批准号:40976012
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项目类别:面上项目
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资助金额:38.0万元
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批准年份:2009
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负责人:练树民
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依托单位: