F-model phase transition in spin ice thin films
收藏DataCite Commons2025-07-09 更新2025-04-16 收录
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https://data.isis.stfc.ac.uk/doi/STUDY/115560714/
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资源简介:
Spin ice is an exotic magnet known for its magnetic monopole excitations and disordered magnetic ground state. This is an experiment on half micron thick epitaxial films of spin ice, that behave like bulk spin ice under in-plane compression. Specific heat measurements suggest that this leads to an unusual phase transition from the disordered spin ice state (the magnetic monopole vacuum) to an ordered state. Such a phase transition is known in the "F-model" of statistical mechanics, but never hitherto observed in a magnetic material. The aim of this experiment is to measure magnetic Bragg peaks that should evolve at temperature below the transition and to map pout the phase diagram by measuring magnetic Bragg peaks as a function of applied magnetic field. In this way we will determine the magnetic order and phase diagram of this interesting system.
自旋冰(Spin ice)是一类以磁单极子激发和无序磁基态为典型特征的奇异磁体。本实验针对厚度为半微米的自旋冰外延薄膜展开研究,该薄膜在面内压缩条件下表现出与体相自旋冰相似的行为。比热测量结果表明,这一过程会引发从无序自旋冰态(磁单极子真空)到有序态的非常规相变。这类相变在统计力学的“F模型”中已有理论预言,但此前从未在磁材料中被观测到。本实验的目标是测量相变温度以下应出现演化的磁布拉格峰,并通过测量磁布拉格峰随外加磁场的变化关系绘制该体系的相图。通过这一手段,我们将明确该有趣体系的磁有序结构与相图。
提供机构:
ISIS Facility
创建时间:
2022-04-28



