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A systematic global stocktake of evidence on human adaptation to climate change 科技报告
来源:Climate Analytics. 出版年: 2021
作者:  Lea Berrang-Ford;  A. R. Siders;  Alexandra Lesnikowski;  Alexandra Paige Fischer;  Max W. Callaghan;  Neal R. Haddaway;  Katharine J. Mach;  Malcolm Araos;  Mohammad Aminur Rahman Shah;  Mia Wannewitz;  Deepal Doshi;  Timo Leiter;  Custodio Matavel;  Justice Issah Musah-Surugu;  Gabrielle Wong-Parodi;  Philip Antwi-Agyei;  Idowu Ajibade;  Neha Chauhan;  William Kakenmaster;  Caitlin Grady;  Vasiliki I. Chalastani;  Kripa Jagannathan;  Eranga K. Galappaththi;  Asha Sitati;  Giulia Scarpa;  Edmond Totin;  Katy Davis;  Nikita Charles Hamilton;  Christine J. Kirchhoff;  Praveen Kumar;  Brian Pentz;  Nicholas P. Simpson;  Emily Theokritoff;  Delphine Deryng;  Diana Reckien;  Carol Zavaleta-Cortijo;  Nicola Ulibarri;  Alcade C. Segnon;  Vhalinavho Khavhagali;  Yuanyuan Shang;  Luckson Zvobgo;  Zinta Zommers;  Jiren Xu;  Portia Adade Williams;  Ivan Villaverde Canosa;  Nicole van Maanen;  Bianca van Bavel;  Maarten van Aalst;  Lynée L. Turek-Hankins;  Hasti Trivedi;  Christopher H. Trisos;  Adelle Thomas;  Shinny Thakur;  Sienna Templeman;  Lindsay C. Stringer;  Garry Sotnik;  Kathryn Dana Sjostrom;  Chandni Singh;  Mariella Z. Siña;  Roopam Shukla;  Jordi Sardans;  Eunice A. Salubi;  Lolita Shaila Safaee Chalkasra;  Raquel Ruiz-Díaz;  Carys Richards;  Pratik Pokharel;  Jan Petzold;  Josep Penuelas;  Julia Pelaez Avila;  Julia B. Pazmino Murillo;  Souha Ouni;  Jennifer Niemann;  Miriam Nielsen;  Mark New;  Patricia Nayna Schwerdtle;  Gabriela Nagle Alverio;  Cristina A. Mullin;  Joshua Mullenite;  Anuszka Mosurska;  Mike D. Morecroft;  Jan C. Minx;  Gina Maskell;  Abraham Marshall Nunbogu;  Alexandre K. Magnan;  Shuaib Lwasa;  Megan Lukas-Sithole;  Tabea Lissner;  Oliver Lilford;  Steven F. Koller;  Matthew Jurjonas;  Elphin Tom Joe;  Lam T. M. Huynh;  Avery Hill;  Rebecca R. Hernandez;  Greeshma Hegde;  Tom Hawxwell;  Sherilee Harper;  Alexandra Harden;  Marjolijn Haasnoot;  Elisabeth A. Gilmore;  Leah Gichuki;  Alyssa Gatt;  Matthias Garschagen;  James D. Ford;  Andrew Forbes;  Aidan D. Farrell;  Carolyn A. F. Enquist;  Susan Elliott;  Emily Duncan;  Erin Coughlan de Perez;  Shaugn Coggins;  Tara Chen;  Donovan Campbell;  Katherine E. Browne;  Kathryn J. Bowen;  Robbert Biesbroek;  Indra D. Bhatt;  Rachel Bezner Kerr;  Stephanie L. Barr;  Emily Baker;  Stephanie E. Austin;  Ingrid Arotoma-Rojas;  Christa Anderson;  Warda Ajaz;  Tanvi Agrawal;  Thelma Zulfawu Abu
收藏  |  浏览/下载:25/0  |  提交时间:2022/01/29
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:54/0  |  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.


  
Experimental demonstration of memory-enhanced quantum communication 期刊论文
NATURE, 2020
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:36/0  |  提交时间:2020/07/03

The ability to communicate quantum information over long distances is of central importance in quantum science and engineering(1). Although some applications of quantum communication such as secure quantum key distribution(2,3) are already being successfully deployed(4-7), their range is currently limited by photon losses and cannot be extended using straightforward measure-and-repeat strategies without compromising unconditional security(8). Alternatively, quantum repeaters(9), which utilize intermediate quantum memory nodes and error correction techniques, can extend the range of quantum channels. However, their implementation remains an outstanding challenge(10-16), requiring a combination of efficient and high-fidelity quantum memories, gate operations, and measurements. Here we use a single solid-state spin memory integrated in a nanophotonic diamond resonator(17-19) to implement asynchronous photonic Bell-state measurements, which are a key component of quantum repeaters. In a proof-of-principle experiment, we demonstrate high-fidelity operation that effectively enables quantum communication at a rate that surpasses the ideal loss-equivalent direct-transmission method while operating at megahertz clock speeds. These results represent a crucial step towards practical quantum repeaters and large-scale quantum networks(20,21).


A solid-state spin memory is used to demonstrate quantum repeater functionality, which has the potential to overcome photon losses involved in long-distance transmission of quantum information.


  
Scaling of domain cascades in stripe and skyrmion phases (vol 10, 1988, 2019) 期刊论文
NATURE COMMUNICATIONS, 2019, 10
作者:  Singh, A.;  Lee, J. C. T.;  Avila, K. E.;  Chen, Y.;  Montoya, S. A.;  Fullerton, E. E.;  Fischer, P.;  Dahmen, K. A.;  Kevan, S. D.;  Sanyal, M. K.;  Roy, S.
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
Comprehensive computational design of ordered peptide macrocycles 期刊论文
SCIENCE, 2017, 358 (6369) : 1461-1466
作者:  Hosseinzadeh, Parisa;  Bhardwaj, Gaurav;  Mulligan, Vikram Khipple;  Shortridge, Matthew D.;  Craven, Timothy W.;  Pardo-Avila, Fatima;  Retti, Stephen A.;  Kim, David E.;  Silva, Daniel-Adriano;  Ibrahim, Yehia M.;  Webb, Ian K.;  Cort, John R.;  Adkins, Joshua N.;  Varani, Gabriele;  Baker, David
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
Extended gamma-ray sources around pulsars constrain the origin of the positron flux at Earth 期刊论文
SCIENCE, 2017, 358 (6365) : 911-914
作者:  Abeysekara, A. U.;  Albert, A.;  Alfaro, R.;  Alvarez, C.;  Alvarez, J. D.;  Arceo, R.;  Arteaga-Velazquez, J. C.;  Rojas, D. Avila;  Solares, H. A. Ayala;  Barber, A. S.;  Bautista-Elivar, N.;  Becerril, A.;  Belmont-Moreno, E.;  BenZvi, S. Y.;  Berley, D.;  Bernal, A.;  Braun, J.;  Brisbois, C.;  Caballero-Mora, K. S.;  Capistran, T.;  Carraminana, A.;  Casanova, S.;  Castillo, M.;  Cotti, U.;  Cotzomi, J.;  de Leon, S. Coutino;  De Leon, C.;  De la Fuente, E.;  Dingus, B. L.;  DuVernois, M. A.;  Diaz-Velez, J. C.;  Ellsworth, R. W.;  Engel, K.;  Enriquez-Rivera, O.;  Fiorino, D. W.;  Fraija, N.;  Garcia-Gonzalez, J. A.;  Garfias, F.;  Gerhardt, M.;  Munoz, A. Gonzalez;  Gonzalez, M. M.;  Goodman, J. A.;  Hampel-Arias, Z.;  Harding, J. P.;  Hernandez, S.;  Hernandez-Almada, A.;  Hinton, J.;  Hona, B.;  Hui, C. M.;  Huntemeyer, P.;  Iriarte, A.;  Jardin-Blicq, A.;  Joshi, V.;  Kaufmann, S.;  Kieda, D.;  Lara, A.;  Lauer, R. J.;  Lee, W. H.;  Lennarz, D.;  Vargas, H. Leon;  Linnemann, J. T.;  Longinotti, A. L.;  Raya, G. Luis;  Luna-Garcia, R.;  Lopez-Coto, R.;  Malone, K.;  Marinelli, S. S.;  Martinez, O.;  Martinez-Castellanos, I.;  Martinez-Castro, J.;  Martinez-Huerta, H.;  Matthews, J. A.;  Miranda-Romagnoli, P.;  Moreno, E.;  Mostafa, M.;  Nellen, L.;  Newbold, M.;  Nisa, M. U.;  Noriega-Papaqui, R.;  Pelayo, R.;  Pretz, J.;  Perez-Perez, E. G.;  Ren, Z.;  Rho, C. D.;  Riviere, C.;  Rosa-Gonzalez, D.;  Rosenberg, M.;  Ruiz-Velasco, E.;  Salazar, H.;  Greus, F. Salesa;  Sandoval, A.;  Schneider, M.;  Schoorlemmer, H.;  Sinnis, G.;  Smith, A. J.;  Springer, R. W.;  Surajbali, P.;  Taboada, I.;  Tibolla, O.;  Tollefson, K.;  Torres, I.;  Ukwatta, T. N.;  Vianello, G.;  Weisgarber, T.;  Westerhoff, S.;  Wisher, I. G.;  Wood, J.;  Yapici, T.;  Yodh, G.;  Younk, P. W.;  Zepeda, A.;  Zhou, H.;  Guo, F.;  Hahn, J.;  Li, H.;  Zhang, H.
收藏  |  浏览/下载:27/0  |  提交时间:2019/11/27