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Nickel isotopic evidence for late-stage accretion of Mercury-like differentiated planetary embryos 期刊论文
Nature Communications, 2021
作者:  Shui-Jiong Wang;  Wenzhong Wang;  Jian-Ming Zhu;  Zhongqing Wu;  Jingao Liu;  Guilin Han;  Fang-Zhen Teng;  Shichun Huang;  Hongjie Wu;  Yujian Wang;  Guangliang Wu;  Weihan Li
收藏  |  浏览/下载:7/0  |  提交时间:2021/01/22
Nagaoka ferromagnetism observed in a quantum dot plaquette 期刊论文
NATURE, 2020, 579 (7800) : 528-533
作者:  Yu, Yong;  Ma, Fei;  Luo, Xi-Yu;  Jing, Bo;  Sun, Peng-Fei;  Fang, Ren-Zhou;  Yang, Chao-Wei;  Liu, Hui;  Zheng, Ming-Yang;  Xie, Xiu-Ping;  Zhang, Wei-Jun;  You, Li-Xing;  Wang, Zhen;  Chen, Teng-Yun;  Zhang, Qiang;  Bao, Xiao-Hui;  Pan, Jian-Wei
收藏  |  浏览/下载:31/0  |  提交时间:2020/07/03

A quantum dot device designed to host four electrons is used to demonstrate Nagaoka ferromagnetism-a model of itinerant magnetism that has so far been limited to theoretical investigation.


Engineered, highly controllable quantum systems are promising simulators of emergent physics beyond the simulation capabilities of classical computers(1). An important problem in many-body physics is itinerant magnetism, which originates purely from long-range interactions of free electrons and whose existence in real systems has been debated for decades(2,3). Here we use a quantum simulator consisting of a four-electron-site square plaquette of quantum dots(4) to demonstrate Nagaoka ferromagnetism(5). This form of itinerant magnetism has been rigorously studied theoretically(6-9) but has remained unattainable in experiments. We load the plaquette with three electrons and demonstrate the predicted emergence of spontaneous ferromagnetic correlations through pairwise measurements of spin. We find that the ferromagnetic ground state is remarkably robust to engineered disorder in the on-site potentials and we can induce a transition to the low-spin state by changing the plaquette topology to an open chain. This demonstration of Nagaoka ferromagnetism highlights that quantum simulators can be used to study physical phenomena that have not yet been observed in any experimental system. The work also constitutes an important step towards large-scale quantum dot simulators of correlated electron systems.


  
地壳岩浆活动中的镁同位素分馏及其意义——以喜马拉雅地区典型岩石为例 项目
项目编号:41729001; 经费:1800000(CNY); 起止日期:2018 / dc_date_end
项目负责人:  滕方振
收藏  |  浏览/下载:6/0  |  提交时间:2019/11/27