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Microbial traits determine soil C emission in response to fresh carbon inputs in forests across biomes 期刊论文
Global Change Biology, 2021
作者:  Chengjie Ren;  Jieying Wang;  Felipe Bastida;  Manuel Delgado-Baquerizo;  Yuanhe Yang;  Jun Wang;  Zekun Zhong;  Zhenghu Zhou;  Shuohong Zhang;  Yaoxin Guo;  Sha Zhou;  Gehong Wei;  Xinhui Han;  Gaihe Yang;  Fazhu Zhao
收藏  |  浏览/下载:14/0  |  提交时间:2021/12/15
Intensification and driven forces of the pastoralism in Northern China since 5.7 ka ago 期刊论文
Geophysical Research Letters, 2021
作者:  Xiaozhong Huang;  Jun Zhang;  Lele Ren;  Shengrui Zhang;  Fahu Chen
收藏  |  浏览/下载:8/0  |  提交时间:2021/03/29
Nanoscale localized contacts for high fill factors in polymer-passivated perovskite solar cells 期刊论文
Science, 2021
作者:  Jun Peng;  Daniel Walter;  Yuhao Ren;  Mike Tebyetekerwa;  Yiliang Wu;  The Duong;  Qiaoling Lin;  Juntao Li;  Teng Lu;  Md Arafat Mahmud;  Olivier Lee Cheong Lem;  Shenyou Zhao;  Wenzhu Liu;  Yun Liu;  Heping Shen;  Li Li;  Felipe Kremer;  Hieu T. Nguyen;  Duk-Yong Choi;  Klaus J. Weber;  Kylie R. Catchpole;  Thomas P. White
收藏  |  浏览/下载:13/0  |  提交时间:2021/01/28
Key rules of life and the fading cryosphere: Impacts in alpine lakes and streams 期刊论文
Global Change Biology, 2020
作者:  James J. Elser;  Chenxi Wu;  Angé;  lica L. Gonzá;  lez;  Daniel H. Shain;  Heidi J. Smith;  Ruben Sommaruga;  Craig E. Williamson;  Janice Brahney;  Scott Hotaling;  Joseph Vanderwall;  Jinlei Yu;  Vladimir Aizen;  Elena Aizen;  Tom J. Battin;  Roberto Camassa;  Xiu Feng;  Hongchen Jiang;  Lixin Lu;  John J. Qu;  Ze Ren;  Jun Wen;  Lijuan Wen;  H. Arthur Woods;  Xiong Xiong;  Jun Xu;  Gongliang Yu;  Joel T. Harper;  Jasmine E. Saros
收藏  |  浏览/下载:8/0  |  提交时间:2020/10/26
Research on the economic development pattern of Chinese counties based on electricity consumption 期刊论文
Energy Policy, 2020
作者:  Yong Shi, Xinyue Ren, Kun Guo, Yi Zhou, Jun Wang
收藏  |  浏览/下载:8/0  |  提交时间:2020/09/22
Electrical manipulation of a topological antiferromagnetic state 期刊论文
NATURE, 2020, 580 (7805) : 608-+
作者:  Chabon, Jacob J.;  Hamilton, Emily G.;  Kurtz, David M.;  Esfahani, Mohammad S.;  Moding, Everett J.;  Stehr, Henning;  Schroers-Martin, Joseph;  Nabet, Barzin Y.;  Chen, Binbin;  Chaudhuri, Aadel A.;  Liu, Chih Long;  Hui, Angela B.;  Jin, Michael C.;  Azad, Tej D.;  Almanza, Diego;  Jeon, Young-Jun;  Nesselbush, Monica C.;  Keh, Lyron Co Ting;  Bonilla, Rene F.;  Yoo, Christopher H.;  Ko, Ryan B.;  Chen, Emily L.;  Merriott, David J.;  Massion, Pierre P.;  Mansfield, Aaron S.;  Jen, Jin;  Ren, Hong Z.;  Lin, Steven H.;  Costantino, Christina L.;  Burr, Risa;  Tibshirani, Robert;  Gambhir, Sanjiv S.;  Berry, Gerald J.;  Jensen, Kristin C.;  West, Robert B.;  Neal, Joel W.;  Wakelee, Heather A.;  Loo, Billy W., Jr.;  Kunder, Christian A.;  Leung, Ann N.;  Lui, Natalie S.;  Berry, Mark F.;  Shrager, Joseph B.;  Nair, Viswam S.;  Haber, Daniel A.;  Sequist, Lecia V.;  Alizadeh, Ash A.;  Diehn, Maximilian
收藏  |  浏览/下载:36/0  |  提交时间:2020/07/03

Room-temperature electrical switching of a topological antiferromagnetic state in polycrystalline Mn3Sn thin films is demonstrated using the same protocol as that used for conventional ferromagnetic metals.


Electrical manipulation of phenomena generated by nontrivial band topology is essential for the development of next-generation technology using topological protection. A Weyl semimetal is a three-dimensional gapless system that hosts Weyl fermions as low-energy quasiparticles(1-4). It has various exotic properties, such as a large anomalous Hall effect (AHE) and chiral anomaly, which are robust owing to the topologically protected Weyl nodes(1-16). To manipulate such phenomena, a magnetic version of Weyl semimetals would be useful for controlling the locations of Weyl nodes in the Brillouin zone. Moreover, electrical manipulation of antiferromagnetic Weyl metals would facilitate the use of antiferromagnetic spintronics to realize high-density devices with ultrafast operation(17,18). However, electrical control of a Weyl metal has not yet been reported. Here we demonstrate the electrical switching of a topological antiferromagnetic state and its detection by the AHE at room temperature in a polycrystalline thin film(19) of the antiferromagnetic Weyl metal Mn3Sn9,10,12,20, which exhibits zero-field AHE. Using bilayer devices composed of Mn3Sn and nonmagnetic metals, we find that an electrical current density of about 10(10) to 10(11) amperes per square metre induces magnetic switching in the nonmagnetic metals, with a large change in Hall voltage. In addition, the current polarity along the bias field and the sign of the spin Hall angle of the nonmagnetic metals-positive for Pt (ref. (21)), close to 0 for Cu and negative for W (ref. (22))-determines the sign of the Hall voltage. Notably, the electrical switching in the antiferromagnet is achieved with the same protocol as that used for ferromagnetic metals(23,24). Our results may lead to further scientific and technological advances in topological magnetism and antiferromagnetic spintronics.


  
Nanoplasma-enabled picosecond switches for ultrafast electronics (vol 579, pg 534, 2020) 期刊论文
NATURE, 2020, 580 (7803) : E8-E8
作者:  Li, Jing;  Xu, Chuanliang;  Lee, Hyung Joo;  Ren, Shancheng;  Zi, Xiaoyuan;  Zhang, Zhiming;  Wang, Haifeng;  Yu, Yongwei;  Yang, Chenghua;  Gao, Xiaofeng;  Hou, Jianguo;  Wang, Linhui;  Yang, Bo;  Yang, Qing;  Ye, Huamao;  Zhou, Tie;  Lu, Xin;  Wang, Yan;  Qu, Min;  Yang, Qingsong;  Zhang, Wenhui;  Shah, Nakul M.;  Pehrsson, Erica C.;  Wang, Shuo;  Wang, Zengjun;  Jiang, Jun;  Zhu, Yan;  Chen, Rui;  Chen, Huan;  Zhu, Feng;  Lian, Bijun;  Li, Xiaoyun;  Zhang, Yun;  Wang, Chao;  Wang, Yue;  Xiao, Guangan;  Jiang, Junfeng;  Yang, Yue;  Liang, Chaozhao;  Hou, Jianquan;  Han, Conghui;  Chen, Ming;  Jiang, Ning;  Zhang, Dahong;  Wu, Song;  Yang, Jinjian;  Wang, Tao;  Chen, Yongliang;  Cai, Jiantong;  Yang, Wenzeng;  Xu, Jun;  Wang, Shaogang;  Gao, Xu;  Wang, Ting;  Sun, Yinghao
收藏  |  浏览/下载:17/0  |  提交时间:2020/07/03
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:30/0  |  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.


  
Metabolic regulation of gene expression by histone lactylation 期刊论文
NATURE, 2019, 574 (7779) : 575-+
作者:  Zhang, Di;  Tang, Zhanyun;  Huang, He;  Zhou, Guolin;  Cui, Chang;  Weng, Yejing;  Liu, Wenchao;  Kim, Sunjoo;  Lee, Sangkyu;  Perez-Neut, Mathew;  Ding, Jun;  Czyz, Daniel;  Hu, Rong;  Ye, Zhen;  He, Maomao;  Zheng, Y. George;  Shuman, Howard A.;  Dai, Lunzhi;  Ren, Bing;  Roeder, Robert G.;  Becker, Lev;  Zhao, Yingming
收藏  |  浏览/下载:28/0  |  提交时间:2019/11/27
Super-elastic ferroelectric single-crystal membrane with continuous electric dipole rotation 期刊论文
SCIENCE, 2019, 366 (6464) : 475-+
作者:  Dong, Guohua;  Li, Suzhi;  Yao, Mouteng;  Zhou, Ziyao;  Zhang, Yong-Qiang;  Han, Xu;  Luo, Zhenlin;  Yao, Junxiang;  Peng, Bin;  Hu, Zhongqiang;  Huang, Houbing;  Jia, Tingting;  Li, Jiangyu;  Ren, Wei;  Ye, Zuo-Guang;  Ding, Xiangdong;  Sun, Jun;  Nan, Ce-Wen;  Chen, Long-Qing;  Li, Ju;  Liu, Ming
收藏  |  浏览/下载:9/0  |  提交时间:2019/11/27