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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.


  
DNA-loop extruding condensin complexes can traverse one another 期刊论文
NATURE, 2020
作者:  Li, Xun;  Zhang, Fei;  He, Haiying;  Berry, Joseph J.;  Zhu, Kai;  Xu, Tao
收藏  |  浏览/下载:9/0  |  提交时间:2020/07/03

Condensin, a key component of the structure maintenance of chromosome (SMC) protein complexes, has recently been shown to be a motor that extrudes loops of DNA(1). It remains unclear, however, how condensin complexes work together to collectively package DNA into chromosomes. Here we use time-lapse single-molecule visualization to study mutual interactions between two DNA-loop-extruding yeast condensins. We find that these motor proteins, which, individually, extrude DNA in one direction only are able to dynamically change each other'  s DNA loop sizes, even when far apart. When they are in close proximity, condensin complexes are able to traverse each other and form a loop structure, which we term a Z-loop-three double-stranded DNA helices aligned in parallel with one condensin at each edge. Z-loops can fill gaps left by single loops and can form symmetric dimer motors that pull in DNA from both sides. These findings indicate that condensin may achieve chromosomal compaction using a variety of looping structures.


Single-molecule visualization shows that condensin-a motor protein that extrudes DNA in one direction only-can encounter and pass a second condensin molecule to form a new type of DNA loop that gathers DNA from both sides.


  
SOLAR CELLS Carrier lifetimes of > 1 mu s in Sn-Pb perovskites enable efficient all-perovskite tandem solar cells 期刊论文
SCIENCE, 2019, 364 (6439) : 475-+
作者:  Tong, Jinhui;  Song, Zhaoning;  Kim, Dong Hoe;  Chen, Xihan;  Chen, Cong;  Palmstrom, Axel F.;  Ndione, Paul F.;  Reese, Matthew O.;  Dunfield, Sean P.;  Reid, Obadiah G.;  Liu, Jun;  Zhang, Fei;  Harvey, Steven P.;  Li, Zhen;  Christensen, Steven T.;  Teeter, Glenn;  Zhao, Dewei;  Al-Jassim, Mowafak M.;  van Hest, Maikel F. A. M.;  Beard, Matthew C.;  Shaheen, Sean E.;  Berry, Joseph J.;  Yan, Yanfa;  Zhu, Kai
收藏  |  浏览/下载:8/0  |  提交时间:2019/11/27
Discovery of widespread type I and type V CRISPR-Cas inhibitors 期刊论文
SCIENCE, 2018, 362 (6411) : 240-242
作者:  Marino, Nicole D.;  Zhang, Jenny Y.;  Borges, Adair L.;  Sousa, Alexander A.;  Leon, Lina M.;  Rauch, Benjamin J.;  Walton, Russell T.;  Berry, Joel D.;  Joung, J. Keith;  Kleinstiver, Benjamin P.;  Bondy-Denomy, Joseph
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/27
Carbonyl Sulfide for Tracing Carbon Fluxes Field Campaign Report 科技报告
来源:US Department of Energy (DOE). 出版年: 2016
作者:  Campbell, J. Elliott;  Berry, Joseph A.;  Billesbach, Dave;  Torn, Margaret S;  Zahniser, Mark;  Seibt, Ulrike;  Maseyk, Kadmiel
收藏  |  浏览/下载:9/0  |  提交时间:2019/04/05
atmospheric carbonyl sulfide  Southern Great Plains  gross primary productivity  carbon cycle