近藤效应的量子模拟结果
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近藤效应的量子模拟结果该数据集中,近藤紧束缚模型、Efimov增强近藤、混合维度自旋交换相互作用三部分于2018年7月至2021年12月,由北京并行科技股份有限公司提供的超算云平台上进行了相关数据的计算、存储和加工。由于数据量较大,使用了二进制存储标准,并及时将数据下载备份到本地;量子气体回波,人工霍尔局域化部分于2020年5月至2021年3月和2022年8月至2023年4月在西安交通大学仲英楼使用苹果和戴尔服务器,通过Matlab进行计算得到数据后,由Matlab/OriginLab可视化数据。在Matlab生产数据时,为了保证数据的可靠性,先数值处理解析过程的结果,调控精度满足误差允许的条件下,再处理实际的物理过程。统计过程中做多次测量后做平均。主要涉及量子气体回波、人工霍尔局域化以及基于自旋轨道耦合的近藤效应等内容。相关的数据共包含5个文件,数据格式主要为“.xlsx”、“.dat”、“.mat”和“.txt”等,数据量为428MB。
Quantum simulation results of the Kondo effect: This dataset consists of three parts, namely the Kondo tight-binding model, Efimov-enhanced Kondo effect, and mixed-dimensional spin-exchange interaction. These data were calculated, stored, and processed on the supercomputing cloud platform provided by Beijing Parallel Technology Co., Ltd. from July 2018 to December 2021. Due to the large data volume, the binary storage standard was adopted, and the data was promptly downloaded and backed up locally. The components of quantum gas echo and artificial Hall localization were calculated using Apple and Dell servers in Zhongying Building, Xi'an Jiaotong University during May 2020 to March 2021 and August 2022 to April 2023 respectively. The acquired data was visualized via Matlab/OriginLab. When generating data via Matlab, to ensure data reliability, the results of the analytical process were first numerically processed, and the actual physical processes were handled only after adjusting the precision to meet the error tolerance requirements. Multiple measurements were performed and averaged during the statistical procedure. This dataset mainly covers contents such as quantum gas echo, artificial Hall localization, and Kondo effect based on spin-orbit coupling. A total of 5 files are included in the dataset, with the main data formats being .xlsx, .dat, .mat, .txt and others, and the total data volume is 428 MB.




