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Exploration of magnon-magnon coupling in an antidot lattice: The role of non-uniform magnetization texture

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Zenodo2024-01-19 更新2026-05-26 收录
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Data for "Exploration of magnon-magnon coupling in an antidot lattice: The role of non-uniform magnetization texture" Due to the substantial volume of data, this repository contains only the source files for the simulations and the Python code to recreate the figures. To reproduce the data: Install our fork of MuMax3 called Amumax: https://github.com/MathieuMoalic/amumax Run all .mx3 files ( around 40 minutes per simulations on a 3080ti, there are 2030 mx3 files to run, ~1350 hours total, ~3TB ) Install python dependencies from requirements.txt Using our post-processing python library `pyzfn`, calculate the spin-wave spectra for each simulation. Run the fig*.py to generate the figures. The research has received funding from the National Science Centre of Poland, Grant No. UMO–2020/37/B/ST3/03936 and 2023/49/N/ST3/03538. The simulations were partially performed at the Poznan Supercomputing and Networking Center (Grant No. 398).

本数据集对应论文《反点晶格中磁振子-磁振子耦合研究:非均匀磁化结构的作用。 由于数据体量庞大,本仓库仅包含仿真源文件与复现图表所需的Python代码。 若需复现数据,请遵循以下步骤: 1. 安装我们基于MuMax3开发的分支版本Amumax,下载地址:https://github.com/MathieuMoalic/amumax 2. 运行所有.mx3格式文件(在3080Ti显卡上,单次仿真耗时约40分钟,共计2030个.mx3文件,总耗时约1350小时,数据总量约3TB 3. 从requirements.txt安装Python依赖包 4. 使用我们开发的后处理Python库`pyzfn`,计算每一次仿真的自旋波频谱 5. 运行fig*.py脚本以生成图表。 本研究获得波兰国家科学中心资助,项目编号分别为UMO–2020/37/B/ST3/03936与2023/49/N/ST3/03538。部分仿真工作在波兹南超级计算与网络中心完成(项目编号398)。

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创建时间:
2024-01-19
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