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Observation and fully-thermal simulation of quasi-electrostatic magnetosonic waves 期刊论文
Geophysical Research Letters, 2021
作者:  Zhonglei Gao;  Si Liu;  Fuliang Xiao;  Qinghua Zhou;  Qian He;  Tong Li;  Xiongjun Shang;  Chang Yang;  Sai Zhang;  Qiwu Yang
收藏  |  浏览/下载:9/0  |  提交时间:2021/12/15
Daily energy expenditure through the human life course 期刊论文
Science, 2021
作者:  Herman Pontzer;  Yosuke Yamada;  Hiroyuki Sagayama;  Philip N. Ainslie;  Lene F. Andersen;  Liam J. Anderson;  Lenore Arab;  Issaad Baddou;  Kweku Bedu-Addo;  Ellen E. Blaak;  Stephane Blanc;  Alberto G. Bonomi;  Carlijn V. C. Bouten;  Pascal Bovet;  Maciej S. Buchowski;  Nancy F. Butte;  Stefan G. Camps;  Graeme L. Close;  Jamie A. Cooper;  Richard Cooper;  Sai Krupa Das;  Lara R. Dugas;  Ulf Ekelund;  Sonja Entringer;  Terrence Forrester;  Barry W. Fudge;  Annelies H Goris;  Michael Gurven;  Catherine Hambly;  Asmaa El Hamdouchi;  Marjije B. Hoos;  Sumei Hu;  Noorjehan Joonas;  Annemiek M. Joosen;  Peter Katzmarzyk;  Kitty P. Kempen;  Misaka Kimura;  William E. Kraus;  Robert F. Kushner;  Estelle V. Lambert;  William R. Leonard;  Nader Lessan;  Corby Martin;  Anine C. Medin;  Erwin P. Meijer;  James C. Morehen;  James P. Morton;  Marian L. Neuhouser;  Teresa A. Nicklas;  Robert M. Ojiambo;  Kirsi H. Pietiläinen;  Yannis P. Pitsiladis;  Jacob Plange-Rhule;  Guy Plasqui;  Ross L. Prentice;  Roberto A. Rabinovich;  Susan B. Racette;  David A. Raichlen;  Eric Ravussin;  Rebecca M. Reynolds;  Susan B. Roberts;  Albertine J. Schuit;  Anders M. Sjödin;  Eric Stice;  Samuel S. Urlacher;  Giulio Valenti;  Ludo M. Van Etten;  Edgar A. Van Mil;  Jonathan C. K. Wells;  George Wilson;  Brian M. Wood;  Jack Yanovski;  Tsukasa Yoshida;  Xueying Zhang;  Alexia J. Murphy-Alford;  Cornelia Loechl;  Amy H. Luke;  Jennifer Rood;  Dale A. Schoeller;  Klaas R. Westerterp;  William W. Wong;  John R. Speakman;  IAEA DLW Database Consortium§
收藏  |  浏览/下载:15/0  |  提交时间:2021/08/17
Liquid medium annealing for fabricating durable perovskite solar cells with improved reproducibility 期刊论文
Science, 2021
作者:  Nengxu Li;  Xiuxiu Niu;  Liang Li;  Hao Wang;  Zijian Huang;  Yu Zhang;  Yihua Chen;  Xiao Zhang;  Cheng Zhu;  Huachao Zai;  Yang Bai;  Sai Ma;  Huifen Liu;  Xixia Liu;  Zhenyu Guo;  Guilin Liu;  Rundong Fan;  Hong Chen;  Jianpu Wang;  Yingzhuo Lun;  Xueyun Wang;  Jiawang Hong;  Haipeng Xie;  Devon S. Jakob;  Xiaoji G. Xu;  Qi Chen;  Huanping Zhou
收藏  |  浏览/下载:39/0  |  提交时间:2021/08/10
China's dhole population at risk of extinction 期刊论文
Science, 2021
作者:  Xiaoyang Wu;  Qinguo Wei;  Sai Deni;  Honghai Zhang
收藏  |  浏览/下载:8/0  |  提交时间:2021/05/07
A Concise Empirical Formula for the Field‐aligned Distribution of Auroral Kilometeric Radiation based on Arase satellite and Van Allen Probes 期刊论文
Geophysical Research Letters, 2021
作者:  Sai Zhang;  Si Liu;  Wentao Li;  Yihua He;  Qiwu Yang;  Fuliang Xiao;  Atsushi Kumamoto;  Yoshizumi Miyoshi;  Yosuke Nakamura;  Fuminori Tsuchiya;  Yoshiya Kasahara;  Iku Shinohara
收藏  |  浏览/下载:8/0  |  提交时间:2021/04/12
Resilience of China's oil import system under external shocks: A system dynamics simulation analysis 期刊论文
Energy Policy, 2020
作者:  Sai Chen, Ming Zhang, Yueting Ding, Rui Nie
收藏  |  浏览/下载:9/0  |  提交时间:2020/08/09
Dominant Roles of High Harmonics on Interactions between AKR and Radiation Belt Relativistic Electrons 期刊论文
Geophysical Research Letters, 2020
作者:  Sai Zhang;  Xiongjun Shang;  Yihua He;  Si Liu;  Fuliang Xiao
收藏  |  浏览/下载:8/0  |  提交时间:2020/08/09
Massively multiplexed nucleic acid detection with Cas13 期刊论文
NATURE, 2020, 582 (7811) : 277-+
作者:  Mahato, Biraj;  Kaya, Koray Dogan;  Fan, Yan;  Sumien, Nathalie;  Shetty, Ritu A.;  Zhang, Wei;  Davis, Delaney;  Mock, Thomas;  Batabyal, Subrata;  Ni, Aiguo;  Mohanty, Samarendra;  Han, Zongchao;  Farjo, Rafal;  Forster, Michael J.;  Swaroop, Anand;  Chavala, Sai H.
收藏  |  浏览/下载:62/0  |  提交时间:2020/07/03

CRISPR-based nucleic acid detection is used in a platform that can simultaneously detect 169 human-associated viruses in multiple samples, providing scalable, multiplexed pathogen detection aimed at routine surveillance for public health.


The great majority of globally circulating pathogens go undetected, undermining patient care and hindering outbreak preparedness and response. To enable routine surveillance and comprehensive diagnostic applications, there is a need for detection technologies that can scale to test many samples(1-3)while simultaneously testing for many pathogens(4-6). Here, we develop Combinatorial Arrayed Reactions for Multiplexed Evaluation of Nucleic acids (CARMEN), a platform for scalable, multiplexed pathogen detection. In the CARMEN platform, nanolitre droplets containing CRISPR-based nucleic acid detection reagents(7)self-organize in a microwell array(8)to pair with droplets of amplified samples, testing each sample against each CRISPR RNA (crRNA) in replicate. The combination of CARMEN and Cas13 detection (CARMEN-Cas13) enables robust testing of more than 4,500 crRNA-target pairs on a single array. Using CARMEN-Cas13, we developed a multiplexed assay that simultaneously differentiates all 169 human-associated viruses with at least 10 published genome sequences and rapidly incorporated an additional crRNA to detect the causative agent of the 2020 COVID-19 pandemic. CARMEN-Cas13 further enables comprehensive subtyping of influenza A strains and multiplexed identification of dozens of HIV drug-resistance mutations. The intrinsic multiplexing and throughput capabilities of CARMEN make it practical to scale, as miniaturization decreases reagent cost per test by more than 300-fold. Scalable, highly multiplexed CRISPR-based nucleic acid detection shifts diagnostic and surveillance efforts from targeted testing of high-priority samples to comprehensive testing of large sample sets, greatly benefiting patients and public health(9-11).


  
Investigation of the fine structure of antihydrogen 期刊论文
NATURE, 2020, 578 (7795) : 375-+
作者:  Zhang, Bing;  Ma, Sai;  Rachmin, Inbal;  He, Megan;  Baral, Pankaj;  Choi, Sekyu;  Goncalves, William A.;  Shwartz, Yulia;  Fast, Eva M.;  Su, Yiqun;  Zon, Leonard I.;  Regev, Aviv;  Buenrostro, Jason D.;  Cunha, Thiago M.;  Chiu, Isaac M.;  Fisher, David E.;  Hsu, Ya-Chieh
收藏  |  浏览/下载:25/0  |  提交时间:2020/07/03

At the historic Shelter Island Conference on the Foundations of Quantum Mechanics in 1947, Willis Lamb reported an unexpected feature in the fine structure of atomic hydrogen: a separation of the 2S(1/2) and 2P(1/2) states(1). The observation of this separation, now known as the Lamb shift, marked an important event in the evolution of modern physics, inspiring others to develop the theory of quantum electrodynamics(2-5). Quantum electrodynamics also describes antimatter, but it has only recently become possible to synthesize and trap atomic antimatter to probe its structure. Mirroring the historical development of quantum atomic physics in the twentieth century, modern measurements on anti-atoms represent a unique approach for testing quantum electrodynamics and the foundational symmetries of the standard model. Here we report measurements of the fine structure in the n = 2 states of antihydrogen, the antimatter counterpart of the hydrogen atom. Using optical excitation of the 1S-2P Lyman-alpha transitions in antihydrogen(6), we determine their frequencies in a magnetic field of 1 tesla to a precision of 16 parts per billion. Assuming the standard Zeeman and hyperfine interactions, we infer the zero-field fine-structure splitting (2P(1/2)-2P(3/2)) in antihydrogen. The resulting value is consistent with the predictions of quantum electrodynamics to a precision of 2 per cent. Using our previously measured value of the 1S-2S transition frequency(6,7), we find that the classic Lamb shift in antihydrogen (2S(1/2)-2P(1/2) splitting at zero field) is consistent with theory at a level of 11 per cent. Our observations represent an important step towards precision measurements of the fine structure and the Lamb shift in the antihydrogen spectrum as tests of the charge-parity-time symmetry(8) and towards the determination of other fundamental quantities, such as the antiproton charge radius(9,10), in this antimatter system.


Precision measurements of the 1S-2P transition in antihydrogen that take into account the standard Zeeman and hyperfine effects confirm the predictions of quantum electrodynamics.


  
Clades of huge phages from across Earth's ecosystems 期刊论文
NATURE, 2020, 578 (7795) : 425-+
作者:  Zhang, Bing;  Ma, Sai;  Rachmin, Inbal;  He, Megan;  Baral, Pankaj;  Choi, Sekyu;  Goncalves, William A.;  Shwartz, Yulia;  Fast, Eva M.;  Su, Yiqun;  Zon, Leonard I.;  Regev, Aviv;  Buenrostro, Jason D.;  Cunha, Thiago M.;  Chiu, Isaac M.
收藏  |  浏览/下载:37/0  |  提交时间:2020/07/03

Bacteriophages typically have small genomes(1) and depend on their bacterial hosts for replication(2). Here we sequenced DNA from diverse ecosystems and found hundreds of phage genomes with lengths of more than 200 kilobases (kb), including a genome of 735 kb, which is-to our knowledge-the largest phage genome to be described to date. Thirty-five genomes were manually curated to completion (circular and no gaps). Expanded genetic repertoires include diverse and previously undescribed CRISPR-Cas systems, transfer RNAs (tRNAs), tRNA synthetases, tRNA-modification enzymes, translation-initiation and elongation factors, and ribosomal proteins. The CRISPR-Cas systems of phages have the capacity to silence host transcription factors and translational genes, potentially as part of a larger interaction network that intercepts translation to redirect biosynthesis to phage-encoded functions. In addition, some phages may repurpose bacterial CRISPR-Cas systems to eliminate competing phages. We phylogenetically define the major clades of huge phages from human and other animal microbiomes, as well as from oceans, lakes, sediments, soils and the built environment. We conclude that the large gene inventories of huge phages reflect a conserved biological strategy, and that the phages are distributed across a broad bacterial host range and across Earth'  s ecosystems.


Genomic analyses of major clades of huge phages sampled from across Earth'  s ecosystems show that they have diverse genetic inventories, including a variety of CRISPR-Cas systems and translation-relevant genes.