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Global maps of soil temperature 期刊论文
Global Change Biology, 2022
作者:  Jonas J. Lembrechts;  Johan van den Hoogen;  Juha Aalto;  Michael B. Ashcroft;  Pieter De Frenne;  Julia Kemppinen;  Martin Kopecký;  Miska Luoto;  Ilya M. D. Maclean;  Thomas W. Crowther;  Joseph J. Bailey;  Stef Haesen;  David H. Klinges;  Pekka Niittynen;  Brett R. Scheffers;  Koenraad Van Meerbeek;  Peter Aartsma;  Otar Abdalaze;  Mehdi Abedi;  Rien Aerts;  Negar Ahmadian;  Antje Ahrends;  Juha M. Alatalo;  Jake M. Alexander;  Camille Nina Allonsius;  Jan Altman;  Christof Ammann;  Christian Andres;  Christopher Andrews;  Jonas Ardö;  Nicola Arriga;  Alberto Arzac;  Valeria Aschero;  Rafael L. Assis;  Jakob Johann Assmann;  Maaike Y. Bader;  Khadijeh Bahalkeh;  Peter Baranč;  ok;  Isabel C. Barrio;  Agustina Barros;  Matti Barthel;  Edmund W. Basham;  Marijn Bauters;  Manuele Bazzichetto;  Luca Belelli Marchesini;  Michael C. Bell;  Juan C. Benavides;  José;  Luis Benito Alonso;  Bernd J. Berauer;  Jarle W. Bjerke;  Robert G. Bjö;  rk;  Mats P. Bjö;  rkman;  Katrin Bjö;  rnsdó;  ttir;  Benjamin Blonder;  Pascal Boeckx;  Julia Boike;  Stef Bokhorst;  ;  rbara N. S. Brum;  Josef Brů;  na;  Nina Buchmann;  Pauline Buysse;  José;  Luí;  s Camargo;  Otá;  vio C. Campoe;  Onur Candan;  Rafaella Canessa;  Nicoletta Cannone;  Michele Carbognani;  Jofre Carnicer;  Angé;  lica Casanova-Katny;  Simone Cesarz;  Bogdan Chojnicki;  Philippe Choler;  Steven L. Chown;  Edgar F. Cifuentes;  Marek Č;  iliak;  Tamara Contador;  Peter Convey;  Elisabeth J. Cooper;  Edoardo Cremonese;  Salvatore R. Curasi;  Robin Curtis;  Maurizio Cutini;  C. Johan Dahlberg;  Gergana N. Daskalova;  Miguel Angel de Pablo;  Stefano Della Chiesa;  ;  rgen Dengler;  Bart Deronde;  Patrice Descombes;  Valter Di Cecco;  Michele Di Musciano;  Jan Dick;  Romina D. Dimarco;  Jiri Dolezal;  Ellen Dorrepaal;  Jiř;  í;  Duš;  ek;  Nico Eisenhauer;  Lars Eklundh;  Todd E. Erickson;  Brigitta Erschbamer;  Werner Eugster;  Robert M. Ewers;  Dan A. Exton;  Nicolas Fanin;  Fatih Fazlioglu;  Iris Feigenwinter;  Giuseppe Fenu;  Olga Ferlian;  M. Rosa Ferná;  ndez Calzado;  Eduardo Ferná;  ndez-Pascual;  Manfred Finckh;  Rebecca Finger Higgens;  T'ai G. W. Forte;  Erika C. Freeman;  Esther R. Frei;  Eduardo Fuentes-Lillo;  Rafael A. Garcí;  a;  Marí;  a B. Garcí;  a;  Charly Gé;  ron;  Mana Gharun;  Dany Ghosn;  Khatuna Gigauri;  Anne Gobin;  Ignacio Goded;  Mathias Goeckede;  Felix Gottschall;  Keith Goulding;  Sanne Govaert;  Bente Jessen Graae;  Sarah Greenwood;  Caroline Greiser;  Achim Grelle;  Benoit Gué;  nard;  Mauro Guglielmin;  Joannè;  s Guillemot;  Peter Haase;  Sylvia Haider;  Aud H. Halbritter;  Maroof Hamid;  Albin Hammerle;  Arndt Hampe;  Siri V. Haugum;  Lucia Hederová;  Bernard Heinesch;  Carole Helfter;  Daniel Hepenstrick;  Maximiliane Herberich;  Mathias Herbst;  Luise Hermanutz;  David S. Hik;  Raú;  l Hoffré;  n;  ;  rgen Homeier;  Lukas Hö;  rtnagl;  Toke T. Hø;  ye;  Filip Hrbacek;  Kristoffer Hylander;  Hiroki Iwata;  Marcin Antoni Jackowicz-Korczynski;  Hervé;  Jactel;  ;  rvi Jä;  rveoja;  Szymon Jastrzę;  bowski;  Anke Jentsch;  Juan J. Jimé;  nez;  Ingibjö;  rg S. Jó;  nsdó;  ttir;  Tommaso Jucker;  Alistair S. Jump;  Radoslaw Juszczak;  ;  bert Kanka;  ;  t Kaš;  par;  George Kazakis;  Julia Kelly;  Anzar A. Khuroo;  Leif Klemedtsson;  Marcin Klisz;  Natascha Kljun;  Alexander Knohl;  Johannes Kobler;  Jozef Kollá;  r;  Martyna M. Kotowska;  Bence Ková;  cs;  Juergen Kreyling;  Andrea Lamprecht;  Simone I. Lang;  Christian Larson;  Keith Larson;  Kamil Laska;  Guerric le Maire;  Rachel I. Leihy;  Luc Lens;  Bengt Liljebladh;  Annalea Lohila;  Juan Lorite;  Benjamin Loubet;  Joshua Lynn;  Martin Macek;  Roy Mackenzie;  Enzo Magliulo;  Regine Maier;  Francesco Malfasi;  Františ;  ek Má;  liš;  Matě;  j Man;  Giovanni Manca;  Antonio Manco;  Tanguy Manise;  Paraskevi Manolaki;  Felipe Marciniak;  Radim Matula;  Ana Clara Mazzolari;  Sergiy Medinets;  Volodymyr Medinets;  Camille Meeussen;  Sonia Merinero;  Rita de Cá;  ssia Guimarã;  es Mesquita;  Katrin Meusburger;  Filip J. R. Meysman;  Sean T. Michaletz;  Ann Milbau;  Dmitry Moiseev;  Pavel Moiseev;  Andrea Mondoni;  Ruth Monfries;  Leonardo Montagnani;  Mikel Moriana-Armendariz;  Umberto Morra di Cella;  Martin Mö;  rsdorf;  Jonathan R. Mosedale;  Lena Muffler;  Miriam Muñ;  oz-Rojas;  Jonathan A. Myers;  Isla H. Myers-Smith;  Laszlo Nagy;  Marianna Nardino;  Ilona Naujokaitis-Lewis;  Emily Newling;  Lena Nicklas;  Georg Niedrist;  Armin Niessner;  Mats B. Nilsson;  Signe Normand;  Marcelo D. Nosetto;  Yann Nouvellon;  Martin A. Nuñ;  ez;  Romà;  Ogaya;  ;  ;  me Ogé;  e;  Joseph Okello;  Janusz Olejnik;  ;  rgen Eivind Olesen;  Ø;  ystein H. Opedal;  Simone Orsenigo;  Andrej Palaj;  Timo Pampuch;  Alexey V. Panov;  Meelis Pä;  rtel;  Ada Pastor;  Aní;  bal Pauchard;  Harald Pauli;  Marian Pavelka;  William D. Pearse;  Matthias Peichl;  Loï;  c Pellissier;  Rachel M. Penczykowski;  Josep Penuelas;  Matteo Petit Bon;  Alessandro Petraglia;  Shyam S. Phartyal;  Gareth K. Phoenix;  Casimiro Pio;  Andrea Pitacco;  Camille Pitteloud;  Roman Plichta;  Francesco Porro;  Miguel Portillo-Estrada;  ;  ;  me Poulenard;  Rafael Poyatos;  Anatoly S. Prokushkin;  Radoslaw Puchalka;  Mihai Puș;  caș;  Dajana Radujković;  Krystal Randall;  Amanda Ratier Backes;  Sabine Remmele;  Wolfram Remmers;  David Renault;  Anita C. Risch;  Christian Rixen;  Sharon A. Robinson;  Bjorn J. M. Robroek;  Adrian V. Rocha;  Christian Rossi;  Graziano Rossi;  Olivier Roupsard;  Alexey V. Rubtsov;  Patrick Saccone;  Clotilde Sagot;  Jhonatan Sallo Bravo;  Cinthya C. Santos;  Judith M. Sarneel;  Tobias Scharnweber;  Jonas Schmeddes;  Marius Schmidt;  Thomas Scholten;  Max Schuchardt;  Naomi Schwartz;  Tony Scott;  Julia Seeber;  Ana Cristina Segalin de Andrade;  Tim Seipel;  Philipp Semenchuk;  Rebecca A. Senior;  Josep M. Serra-Diaz;  Piotr Sewerniak;  Ankit Shekhar;  Nikita V. Sidenko;  Lukas Siebicke;  Laura Siegwart Collier;  Elizabeth Simpson;  David P. Siqueira;  Zuzana Sitková;  Johan Six;  Marko Smiljanic;  Stuart W. Smith;  Sarah Smith-Tripp;  Ben Somers;  Mia Vedel Sø;  rensen;  José;  Joã;  o L. L. Souza;  Bartolomeu Israel Souza;  Arildo Souza Dias;  Marko J. Spasojevic;  James D. M. Speed;  Fabien Spicher;  Angela Stanisci;  Klaus Steinbauer;  Rainer Steinbrecher;  Michael Steinwandter;  Michael Stemkovski;  ;  rg G. Stephan;  Christian Stiegler;  Stefan Stoll;  Martin Svá;  tek;  Miroslav Svoboda;  Torbern Tagesson;  Andrew J. Tanentzap;  Franziska Tanneberger;  Jean-Paul Theurillat;  Haydn J. D. Thomas;  Andrew D. Thomas;  Katja Tielbö;  rger;  Marcello Tomaselli;  Urs Albert Treier;  Mario Trouillier;  Pavel Dan Turtureanu;  Rosamond Tutton;  Vilna A. Tyystjä;  rvi;  Masahito Ueyama;  Karol Ujhá;  zy;  Mariana Ujhá;  zyová;  Domas Uogintas;  Anastasiya V. Urban;  Josef Urban;  Marek Urbaniak;  Tudor-Mihai Ursu;  Francesco Primo Vaccari;  Stijn Van de Vondel;  Liesbeth van den Brink;  Maarten Van Geel;  Vigdis Vandvik;  Pieter Vangansbeke;  Andrej Varlagin;  G. F. Veen;  Elmar Veenendaal;  Susanna E. Venn;  Hans Verbeeck;  Erik Verbrugggen;  Frank G. A. Verheijen;  Luis Villar;  Luca Vitale;  Pascal Vittoz;  Maria Vives-Ingla;  Jonathan von Oppen;  Josefine Walz;  Runxi Wang;  Yifeng Wang;  Robert G. Way;  Ronja E. M. Wedegä;  rtner;  Robert Weigel;  Jan Wild;  Matthew Wilkinson;  Martin Wilmking;  Lisa Wingate;  Manuela Winkler;  Sonja Wipf;  Georg Wohlfahrt;  Georgios Xenakis;  Yan Yang;  Zicheng Yu;  Kailiang Yu;  Florian Zellweger;  Jian Zhang;  Zhaochen Zhang;  Peng Zhao;  Klaudia Ziembliń;  ska;  Reiner Zimmermann;  Shengwei Zong;  Viacheslav I. Zyryanov;  Ivan Nijs;  Jonathan Lenoir
收藏  |  浏览/下载:38/0  |  提交时间:2022/02/23
De novo assembly, annotation, and comparative analysis of 26 diverse maize genomes 期刊论文
Science, 2021
作者:  Matthew B. Hufford;  Arun S. Seetharam;  Margaret R. Woodhouse;  Kapeel M. Chougule;  Shujun Ou;  Jianing Liu;  William A. Ricci;  Tingting Guo;  Andrew Olson;  Yinjie Qiu;  Rafael Della Coletta;  Silas Tittes;  Asher I. Hudson;  Alexandre P. Marand;  Sharon Wei;  Zhenyuan Lu;  Bo Wang;  Marcela K. Tello-Ruiz;  Rebecca D. Piri;  Na Wang;  Dong won Kim;  Yibing Zeng;  Christine H. O’Connor;  Xianran Li;  Amanda M. Gilbert;  Erin Baggs;  Ksenia V. Krasileva;  John L. Portwood;  Ethalinda K. S. Cannon;  Carson M. Andorf;  Nancy Manchanda;  Samantha J. Snodgrass;  David E. Hufnagel;  Qiuhan Jiang;  Sarah Pedersen;  Michael L. Syring;  David A. Kudrna;  Victor Llaca;  Kevin Fengler;  Robert J. Schmitz;  Jeffrey Ross-Ibarra;  Jianming Yu;  Jonathan I. Gent;  Candice N. Hirsch;  Doreen Ware;  R. Kelly Dawe
收藏  |  浏览/下载:18/0  |  提交时间:2021/08/10
Long-term increases in pathogen seroprevalence in polar bears (Ursus maritimus) influenced by climate change 期刊论文
Global Change Biology, 2021
作者:  Nicholas W. Pilfold;  Evan S. Richardson;  John Ellis;  Emily Jenkins;  W. Brad Scandrett;  Adriá;  n Herná;  ndez-Ortiz;  Kayla Buhler;  David McGeachy;  Batol Al-Adhami;  Kelly Konecsni;  Vladislav A. Lobanov;  Megan A. Owen;  Bruce Rideout;  Nicholas J. Lunn
收藏  |  浏览/下载:18/0  |  提交时间:2021/07/27
Senolytics reduce coronavirus-related mortality in old mice 期刊论文
Science, 2021
作者:  Christina D. Camell;  Matthew J. Yousefzadeh;  Yi Zhu;  Larissa G. P. Langhi Prata;  Matthew A. Huggins;  Mark Pierson;  Lei Zhang;  Ryan D. O’Kelly;  Tamar Pirtskhalava;  Pengcheng Xun;  Keisuke Ejima;  Ailing Xue;  Utkarsh Tripathi;  Jair Machado Espindola-Netto;  Nino Giorgadze;  Elizabeth J. Atkinson;  Christina L. Inman;  Kurt O. Johnson;  Stephanie H. Cholensky;  Timothy W. Carlson;  Nathan K. LeBrasseur;  Sundeep Khosla;  M. Gerard O’Sullivan;  David B. Allison;  Stephen C. Jameson;  Alexander Meves;  Ming Li;  Y. S. Prakash;  Sergio E. Chiarella;  Sara E. Hamilton;  Tamara Tchkonia;  Laura J. Niedernhofer;  James L. Kirkland;  Paul D. Robbins
收藏  |  浏览/下载:15/0  |  提交时间:2021/07/27
Decrypting bacterial polyphenol metabolism in an anoxic wetland soil 期刊论文
Nature Communications, 2021
作者:  Bridget B. McGivern;  Malak M. Tfaily;  Mikayla A. Borton;  Suzanne M. Kosina;  Rebecca A. Daly;  Carrie D. Nicora;  Samuel O. Purvine;  Allison R. Wong;  Mary S. Lipton;  David W. Hoyt;  Trent R. Northen;  Ann E. Hagerman;  Kelly C. Wrighton
收藏  |  浏览/下载:10/0  |  提交时间:2021/05/07
Ecological insights from three decades of animal movement tracking across a changing Arctic 期刊论文
Science, 2020
作者:  Sarah C. Davidson;  Gil Bohrer;  Eliezer Gurarie;  Scott LaPoint;  Peter J. Mahoney;  Natalie T. Boelman;  Jan U. H. Eitel;  Laura R. Prugh;  Lee A. Vierling;  Jyoti Jennewein;  Emma Grier;  Ophélie Couriot;  Allicia P. Kelly;  Arjan J. H. Meddens;  Ruth Y. Oliver;  Roland Kays;  Martin Wikelski;  Tomas Aarvak;  Joshua T. Ackerman;  José A. Alves;  Erin Bayne;  Bryan Bedrosian;  Jerrold L. Belant;  Andrew M. Berdahl;  Alicia M. Berlin;  Dominique Berteaux;  Joël Bêty;  Dmitrijs Boiko;  Travis L. Booms;  Bridget L. Borg;  Stan Boutin;  W. Sean Boyd;  Kane Brides;  Stephen Brown;  Victor N. Bulyuk;  Kurt K. Burnham;  David Cabot;  Michael Casazza;  Katherine Christie;  Erica H. Craig;  Shanti E. Davis;  Tracy Davison;  Dominic Demma;  Christopher R. DeSorbo;  Andrew Dixon;  Robert Domenech;  Götz Eichhorn;  Kyle Elliott;  Joseph R. Evenson;  Klaus-Michael Exo;  Steven H. Ferguson;  Wolfgang Fiedler;  Aaron Fisk;  Jérôme Fort;  Alastair Franke;  Mark R. Fuller;  Stefan Garthe;  Gilles Gauthier;  Grant Gilchrist;  Petr Glazov;  Carrie E. Gray;  David Grémillet;  Larry Griffin;  Michael T. Hallworth;  Autumn-Lynn Harrison;  Holly L. Hennin;  J. Mark Hipfner;  James Hodson;  James A. Johnson;  Kyle Joly;  Kimberly Jones;  Todd E. Katzner;  Jeff W. Kidd;  Elly C. Knight;  Michael N. Kochert;  Andrea Kölzsch;  Helmut Kruckenberg;  Benjamin J. Lagassé;  Sandra Lai;  Jean-François Lamarre;  Richard B. Lanctot;  Nicholas C. Larter;  A. David M. Latham;  Christopher J. Latty;  James P. Lawler;  Don-Jean Léandri-Breton;  Hansoo Lee;  Stephen B. Lewis;  Oliver P. Love;  Jesper Madsen;  Mark Maftei;  Mark L. Mallory;  Buck Mangipane;  Mikhail Y. Markovets;  Peter P. Marra;  Rebecca McGuire;  Carol L. McIntyre;  Emily A. McKinnon;  Tricia A. Miller;  Sander Moonen;  Tong Mu;  Gerhard J. D. M. Müskens;  Janet Ng;  Kerry L. Nicholson;  Ingar Jostein Øien;  Cory Overton;  Patricia A. Owen;  Allison Patterson;  Aevar Petersen;  Ivan Pokrovsky;  Luke L. Powell;  Rui Prieto;  Petra Quillfeldt;  Jennie Rausch;  Kelsey Russell;  Sarah T. Saalfeld;  Hans Schekkerman;  Joel A. Schmutz;  Philipp Schwemmer;  Dale R. Seip;  Adam Shreading;  Mónica A. Silva;  Brian W. Smith;  Fletcher Smith;  Jeff P. Smith;  Katherine R. S. Snell;  Aleksandr Sokolov;  Vasiliy Sokolov;  Diana V Solovyeva;  Mathew S. Sorum;  Grigori Tertitski;  J. F. Therrien;  Kasper Thorup;  T. Lee Tibbitts;  Ingrid Tulp;  Brian D. Uher-Koch;  Rob S. A. van Bemmelen;  Steven Van Wilgenburg;  Andrew L. Von Duyke;  Jesse L. Watson;  Bryan D. Watts;  Judy A. Williams;  Matthew T. Wilson;  James R. Wright;  Michael A. Yates;  David J. Yurkowski;  Ramūnas Žydelis;  Mark Hebblewhite
收藏  |  浏览/下载:19/0  |  提交时间:2020/11/09
Strengthen causal models for better conservation outcomes for human well-being 科技报告
来源:Environment for Development Initiative. 出版年: 2020
作者:  Samantha H. Cheng;  Madeleine C. McKinnon;  Yuta J. Masuda;  Ruth Garside;  Kelly W. Jones;  Daniel C. Miller;  Andrew S. Pullin;  William J. Sutherland;  Caitlin Augustin;  David A. Gill;  Supin Wongbusarakum;  David Wilkie
收藏  |  浏览/下载:7/0  |  提交时间:2020/06/29
Entanglement-based secure quantum cryptography over 1,120 kilometres 期刊论文
NATURE, 2020
作者:  Paldi, Flora;  Alver, Bonnie;  Robertson, Daniel;  Schalbetter, Stephanie A.;  Kerr, Alastair;  Kelly, David A.;  Baxter, Jonathan;  Neale, Matthew J.;  Marston, Adele L.
收藏  |  浏览/下载:48/0  |  提交时间:2020/07/03

An efficient entanglement-based quantum key distribution is sent from the Micius satellite to two ground observatories 1,120 kilometres apart to establish secure quantum cryptography for the exchange ofquantum keys.


Quantum key distribution (QKD)(1-3)is a theoretically secure way of sharing secret keys between remote users. It has been demonstrated in a laboratory over a coiled optical fibre up to 404 kilometres long(4-7). In the field, point-to-point QKD has been achieved from a satellite to a ground station up to 1,200 kilometres away(8-10). However, real-world QKD-based cryptography targets physically separated users on the Earth, for which the maximum distance has been about 100 kilometres(11,12). The use of trusted relays can extend these distances from across a typical metropolitan area(13-16)to intercity(17)and even intercontinental distances(18). However, relays pose security risks, which can be avoided by using entanglement-based QKD, which has inherent source-independent security(19,20). Long-distance entanglement distribution can be realized using quantum repeaters(21), but the related technology is still immature for practical implementations(22). The obvious alternative for extending the range of quantum communication without compromising its security is satellite-based QKD, but so far satellite-based entanglement distribution has not been efficient(23)enough to support QKD. Here we demonstrate entanglement-based QKD between two ground stations separated by 1,120 kilometres at a finite secret-key rate of 0.12 bits per second, without the need for trusted relays. Entangled photon pairs were distributed via two bidirectional downlinks from the Micius satellite to two ground observatories in Delingha and Nanshan in China. The development of a high-efficiency telescope and follow-up optics crucially improved the link efficiency. The generated keys are secure for realistic devices, because our ground receivers were carefully designed to guarantee fair sampling and immunity to all known side channels(24,25). Our method not only increases the secure distance on the ground tenfold but also increases the practical security of QKD to an unprecedented level.


  
Highly porous nature of a primitive asteroid revealed by thermal imaging 期刊论文
NATURE, 2020, 579 (7800) : 518-522
作者:  Quinn, Robert A.;  Melnik, Alexey, V;  Vrbanac, Alison;  Fu, Ting;  Patras, Kathryn A.;  Christy, Mitchell P.;  Bodai, Zsolt;  Belda-Ferre, Pedro;  Tripathi, Anupriya;  Chung, Lawton K.;  Downes, Michael;  Welch, Ryan D.;  Quinn, Melissa;  Humphrey, Greg;  Panitchpakdi, Morgan;  Weldon, Kelly C.;  Aksenov, Alexander;  da Silva, Ricardo;  Avila-Pacheco, Julian;  Clish, Clary;  Bae, Sena;  Mallick, Himel;  Franzosa, Eric A.;  Lloyd-Price, Jason;  Bussell, Robert;  Thron, Taren;  Nelson, Andrew T.;  Wang, Mingxun;  Leszczynski, Eric;  Vargas, Fernando;  Gauglitz, Julia M.;  Meehan, Michael J.;  Gentry, Emily;  Arthur, Timothy D.;  Komor, Alexis C.;  Poulsen, Orit;  Boland, Brigid S.;  Chang, John T.;  Sandborn, William J.;  Lim, Meerana;  Garg, Neha;  Lumeng, Julie C.;  Xavier, Ramnik J.;  Kazmierczak, Barbara, I;  Jain, Ruchi;  Egan, Marie;  Rhee, Kyung E.;  Ferguson, David;  Raffatellu, Manuela;  Vlamakis, Hera;  Haddad, Gabriel G.;  Siegel, Dionicio;  Huttenhower, Curtis;  Mazmanian, Sarkis K.;  Evans, Ronald M.;  Nizet, Victor;  Knight, Rob;  Dorrestein, Pieter C.
收藏  |  浏览/下载:48/0  |  提交时间:2020/05/13

Carbonaceous (C-type) asteroids(1) are relics of the early Solar System that have preserved primitive materials since their formation approximately 4.6 billion years ago. They are probably analogues of carbonaceous chondrites(2,3) and are essential for understanding planetary formation processes. However, their physical properties remain poorly known because carbonaceous chondrite meteoroids tend not to survive entry to Earth'  s atmosphere. Here we report on global one-rotation thermographic images of the C-type asteroid 162173 Ryugu, taken by the thermal infrared imager (TIR)(4) onboard the spacecraft Hayabusa2(5), indicating that the asteroid'  s boulders and their surroundings have similar temperatures, with a derived thermal inertia of about 300 J m(-2) s(-0.5) K-1 (300 tiu). Contrary to predictions that the surface consists of regolith and dense boulders, this low thermal inertia suggests that the boulders are more porous than typical carbonaceous chondrites(6) and that their surroundings are covered with porous fragments more than 10 centimetres in diameter. Close-up thermal images confirm the presence of such porous fragments and the flat diurnal temperature profiles suggest a strong surface roughness effect(7,8). We also observed in the close-up thermal images boulders that are colder during the day, with thermal inertia exceeding 600 tiu, corresponding to dense boulders similar to typical carbonaceous chondrites(6). These results constrain the formation history of Ryugu: the asteroid must be a rubble pile formed from impact fragments of a parent body with microporosity(9) of approximately 30 to 50 per cent that experienced a low degree of consolidation. The dense boulders might have originated from the consolidated innermost region or they may have an exogenic origin. This high-porosity asteroid may link cosmic fluffy dust to dense celestial bodies(10).


Thermal imaging data obtained from the spacecraft Hayabusa2 reveal that the carbonaceous asteroid 162173 Ryugu is an object of unusually high porosity.


  
Operation of a silicon quantum processor unit cell above one kelvin 期刊论文
NATURE, 2020, 580 (7803) : 350-+
作者:  Han, Kyuho;  Pierce, Sarah E.;  Li, Amy;  Spees, Kaitlyn;  Anderson, Grace R.;  Seoane, Jose A.;  Lo, Yuan-Hung;  Dubreuil, Michael;  Olivas, Micah;  Kamber, Roarke A.;  Wainberg, Michael;  Kostyrko, Kaja;  Kelly, Marcus R.;  Yousefi, Maryam;  Simpkins, Scott W.;  Yao, David
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/03

Quantum computers are expected to outperform conventional computers in several important applications, from molecular simulation to search algorithms, once they can be scaled up to large numbers-typically millions-of quantum bits (qubits)(1-3). For most solid-state qubit technologies-for example, those using superconducting circuits or semiconductor spins-scaling poses a considerable challenge because every additional qubit increases the heat generated, whereas the cooling power of dilution refrigerators is severely limited at their operating temperature (less than 100 millikelvin)(4-6). Here we demonstrate the operation of a scalable silicon quantum processor unit cell comprising two qubits confined to quantum dots at about 1.5 kelvin. We achieve this by isolating the quantum dots from the electron reservoir, and then initializing and reading the qubits solely via tunnelling of electrons between the two quantum dots(7-9). We coherently control the qubits using electrically driven spin resonance(10,11) in isotopically enriched silicon(12 28)Si, attaining single-qubit gate fidelities of 98.6 per cent and a coherence time of 2 microseconds during '  hot'  operation, comparable to those of spin qubits in natural silicon at millikelvin temperatures(13-16). Furthermore, we show that the unit cell can be operated at magnetic fields as low as 0.1 tesla, corresponding to a qubit control frequency of 3.5 gigahertz, where the qubit energy is well below the thermal energy. The unit cell constitutes the core building block of a full-scale silicon quantum computer and satisfies layout constraints required by error-correction architectures(8),(17). Our work indicates that a spin-based quantum computer could be operated at increased temperatures in a simple pumped He-4 system (which provides cooling power orders of magnitude higher than that of dilution refrigerators), thus potentially enabling the integration of classical control electronics with the qubit array(18,19).