Numerical Modelling of Spin Ice Dynamics
Numerical Modelling of Spin Ice Dynamics
批准号:
2892096
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:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --
中文摘要
为什么你不能把北极从磁铁上拉下来?如果你试着把一块磁铁切成两半,你会得到两块更小的磁铁,每一块都有北极和南极。重复这个过程,你最终会得到一个具有磁矩的原子,它也有两极。从本质上讲,答案是,虽然有带电荷的粒子(电“粒子”,如电子),但在我们的宇宙中没有带磁性的粒子-磁单极子。然而,越来越多的证据表明,这不是故事的全部。1997年,科学家们发现了一种神秘的新型磁铁,叫做自旋冰。我们的主要理论认为,这些晶体中单个离子的磁场会自我定向,从而产生局部的磁化源和磁化汇,这与磁单极子有着惊人的相似之处。最近的数值[2]和实验工作[3]表明,磁单极子在旋转冰晶周围的磁场波动中产生独特的特征,称为“粉红噪声”。该项目旨在了解磁单极子如何产生粉红噪声;如何利用这种理解来明确证明磁单极子的存在;以及我们如何将这种理解用于开发技术应用。这项工作将结合联合收割机数值方法(动态蒙特卡罗)与分析建模。主题将包括噪音光谱,分形渗流集群,循环擦除随机游动,平衡动力学,和玻璃行为。虽然这项工作本质上是理论性的,但有与实验同事接触的空间,并且该项目将由两名实验学家共同监督。为自旋冰开发的模型将适用于人工自旋冰结构,即由S。拉达克G博士的研究小组正在使这些相同的结构成为超导体。该项目包括大量的外部资金用于个人发展,包括公开演讲和媒体培训。如果愿意的话,还可以提供3个月工资的资金来进行工业安置。两者都是监管团队对负责任创新承诺的一部分。
英文摘要
Why can't you pull the north pole off a magnet? If you try to cut a magnet in half you get two smaller magnets, each with a north and south pole. Repeat this process and you ultimately end up with a single atom with a magnetic moment, which again has both poles. Essentially, the answer is that while there are particles with electric charge (electric 'monopoles', such as electrons) there are no magnetically charged particles -- magnetic monopoles -- in our universe.However, there is growing evidence that this is not the whole story [1]. In 1997 a mysterious new type of magnet was discovered, called a spin ice. Our leading theories suggest that the magnetic fields of individual ions in these crystals orient themselves so as to create local sources and sinks of magnetization, which bear a striking resemblance to magnetic monopoles. Recent numerical [2] and experimental work [3] indicates that magnetic monopoles produce unique signatures in the fluctuations of the magnetic field around spin ice crystals, signatures known as 'pink noise'.This project is aimed at understanding how monopoles generate pink noise; how that understanding might be used to definitively prove the monopoles' existence; and how we might put this understanding to use in developing technological applications. The work will combine numerical approaches (kinetic Monte Carlo) with analytical modelling. Topics will include noise spectra, fractal percolation clusters, loop erased random walks, out-of-equilibrium dynamics, and glassy behaviour. While the work is theoretical in nature, there is scope to engage with experimental colleagues, and the project will be co-supervised by two experimentalists. The models developed for spin ices will be applicable to the artificial spin ice structures, arrays of nanometre-scale magnetic domains which capture the key features of spin ices, developed by the group of Dr S. Ladak. These same structures are being made superconducting by the group of Dr G. Klemencic, offering the possibility to include quantum effects into the work.The project includes substantial external funding for personal development, including public speaking and media training. There is also funding available for 3 months' salary to undertake an industrial placement if desirable. Both are part of the supervisory team's commitment to Responsible Innovation.
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会议论文
国内基金
海外基金
Improving modelling of compact binary evolution.
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批准号:10903001
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项目类别:青年科学基金项目
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资助金额:20.0万元
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批准年份:2009
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负责人:史蒂芬
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依托单位: