作者:Tanaka, Miuko; Wang, Joel i-j.; Dinh, Thao H.; Rodan-Legrain, Daniel; Zaman, Sameia; Hays, Max; Almanakly, Aziza; Kannan, Bharath; Kim, David K.; Niedzielski, Bethany M.; Serniak, Kyle; Schwartz, Mollie E.; Watanabe, Kenji; Taniguchi, Takashi; Orlando, Terry P.; Gustavsson, Simon; Grover, Jeffrey A.; Jarillo-Herrero, Pablo; Oliver, William D.
作者单位:Massachusetts Institute of Technology (MIT); University of Tokyo; Massachusetts Institute of Technology (MIT); Massachusetts Institute of Technology (MIT); Massachusetts Institute of Technology (MIT); Lincoln Laboratory; National Institute for Materials Science; National Institute for Materials Science
摘要:The physics of superconductivity in magic-angle twisted bilayer graphene (MATBG) is a topic of keen interest in moir & eacute; systems research, and it may provide an insight into the pairing mechanism of other strongly correlated materials such as high-critical-temperature superconductors. Here we use d.c. transport and microwave circuit quantum electrodynamics to directly measure the superfluid stiffness of superconducting MATBG through its kinetic inductance. We find the superfluid stiffnes...
作者:Andersen, T. I.; Astrakhantsev, N.; Karamlou, A. H.; Berndtsson, J.; Motruk, J.; Szasz, A.; Gross, J. A.; Schuckert, A.; Westerhout, T.; Zhang, Y.; Forati, E.; Rossi, D.; Kobrin, B.; Di Paolo, A.; Klots, A. R.; Drozdov, I.; Kurilovich, V.; Petukhov, A.; Ioffe, L. B.; Elben, A.; Rath, A.; Vitale, V.; Vermersch, B.; Acharya, R.; Beni, L. A.; Anderson, K.; Ansmann, M.; Arute, F.; Arya, K.; Asfaw, A.; Atalaya, J.; Ballard, B.; Bardin, J. C.; Bengtsson, A.; Bilmes, A.; Bortoli, G.; Bourassa, A.; Bovaird, J.; Brill, L.; Broughton, M.; Browne, D. A.; Buchea, B.; Buckley, B. B.; Buell, D. A.; Burger, T.; Burkett, B.; Bushnell, N.; Cabrera, A.; Campero, J.; Chang, H. -S.; Chen, Z.; Chiaro, B.; Claes, J.; Cleland, Y.; Cogan, J.; Collins, R.; Conner, P.; Courtney, W.; Crook, A. L.; Das, S.; Debroy, D. M.; De Lorenzo, L.; Barba, A. Del Toro; Demura, S.; Donohoe, P.; Dunsworth, A.; Earle, C.; Eickbusch, A.; Elbag, A. M.; Elzouka, M.; Erickson, C.; Faoro, L.; Fatemi, R.; Ferreira, V. S.; Burgos, L. Flores; Fowler, A. G.; Foxen, B.; Ganjam, S.; Gasca, R.; Giang, W.; Gidney, C.; Gilboa, D.; Giustina, M.; Gosula, R.; Dau, A. Grajales; Graumann, D.; Greene, A.; Habegger, S.; Hamilton, M. C.; Hansen, M.; Harrigan, M. P.; Harrington, S. D.; Heslin, S.; Heu, P.; Hill, G.; Hoffmann, M. R.; Huang, H. -Y.; Huang, T.; Huff, A.; Huggins, W. J.; Isakov, S. V.; Jeffrey, E.; Jiang, Z.; Jones, C.; Jordan, S.; Joshi, C.; Juhas, P.; Kafri, D.; Kang, H.; Kechedzhi, K.; Khaire, T.; Khattar, T.; Khezri, M.; Kieferova, M.; Kim, S.; Kitaev, A.; Klimov, P.; Korotkov, A. N.; Kostritsa, F.; Kreikebaum, J. M.; Landhuis, D.; Langley, B. W.; Laptev, P.; Lau, K. -M.; Le Guevel, L.; Ledford, J.; Lee, J.; Lee, K. W.; Lensky, Y. D.; Lester, B. J.; Li, W. Y.; Lill, A. T.; Liu, W.; Livingston, W. P.; Locharla, A.; Lundahl, D.; Lunt, A.; Madhuk, S.; Maloney, A.; Mandra, S.; Martin, L. S.; Martin, O.; Martin, S.; Maxfield, C.; McClean, J. R.; McEwen, M.; Meeks, S.; Miao, K. C.; Mieszala, A.; Molina, S.; Montazeri, S.; Morvan, A.; Movassagh, R.; Neill, C.; Nersisyan, A.; Newman, M.; Nguyen, A.; Nguyen, M.; Ni, C. -H.; Niu, M. Y.; Oliver, W. D.; Ottosson, K.; Pizzuto, A.; Potter, R.; Pritchard, O.; Pryadko, L. P.; Quintana, C.; Reagor, M. J.; Rhodes, D. M.; Roberts, G.; Rocque, C.; Rosenberg, E.; Rubin, N. C.; Saei, N.; Sankaragomathi, K.; Satzinger, K. J.; Schurkus, H. F.; Schuster, C.; Shearn, M. J.; Shorter, A.; Shutty, N.; Shvarts, V.; Sivak, V.; Skruzny, J.; Small, S.; Smith, W. Clarke; Springer, S.; Sterling, G.; Suchard, J.; Szalay, M.; Sztein, A.; Thor, D.; Torres, A.; Torunbalci, M. M.; Vaishnav, A.; Vdovichev, S.; Villalonga, B.; Heidweiller, C. Vollgraff; Waltman, S.; Wang, S. X.; White, T.; Wong, K.; Woo, B. W. K.; Xing, C.; Yao, Z. Jamie; Yeh, P.; Ying, B.; Yoo, J.; Yosri, N.; Young, G.; Zalcman, A.; Zhu, N.; Zobrist, N.; Neven, H.; Babbush, R.; Boixo, S.; Hilton, J.; Lucero, E.; Megrant, A.; Kelly, J.; Chen, Y.; Smelyanskiy, V.; Vidal, G.; Roushan, P.; Lauchli, A. M.; Abanin, D. A.; Mi, X.
作者单位:Alphabet Inc.; Google Incorporated; University of Geneva; University System of Maryland; University of Maryland College Park; National Institute of Standards & Technology (NIST) - USA; Radboud University Nijmegen; University of Connecticut; California Institute of Technology; California Institute of Technology; Communaute Universite Grenoble Alpes; Universite Grenoble Alpes (UGA); Centre National de la Recherche Scientifique (CNRS); University of Massachusetts System; University of Massachusetts Amherst; Auburn University System; Auburn University; University of Technology Sydney; University of California System; University of California Riverside; Harvard University; Swiss Federal Institutes of Technology Domain; Paul Scherrer Institute; Swiss Federal Institutes of Technology Domain; Ecole Polytechnique Federale de Lausanne; Princeton University
摘要:Understanding how interacting particles approach thermal equilibrium is a major challenge of quantum simulators(1,2). Unlocking the full potential of such systems towards this goal requires flexible initial state preparation, precise time evolution and extensive probes for final state characterization. Here we present a quantum simulator comprising 69 superconducting qubits that supports both universal quantum gates and high-fidelity analogue evolution, with performance beyond the reach of cla...
作者:Manovitz, Tom; Li, Sophie H.; Ebadi, Sepehr; Samajdar, Rhine; Geim, Alexandra A.; Evered, Simon J.; Bluvstein, Dolev; Zhou, Hengyun; Koyluoglu, Nazli Ugur; Feldmeier, Johannes; Dolgirev, Pavel E.; Maskara, Nishad; Kalinowski, Marcin; Sachdev, Subir; Huse, David A.; Greiner, Markus; Vuletic, Vladan; Lukin, Mikhail D.
作者单位:Harvard University; Princeton University; Princeton University; Harvard University; Massachusetts Institute of Technology (MIT); Massachusetts Institute of Technology (MIT)
摘要:Understanding the collective quantum dynamics of non-equilibrium many-body systems is an outstanding challenge in quantum science. In particular, dynamics driven by quantum fluctuations are important for the formation of exotic quantum phases of matter(1), fundamental high-energy processes(2), quantum metrology(3,4) and quantum algorithms(5). Here we use a programmable quantum simulator based on Rydberg atom arrays to experimentally study collective dynamics across a (2+1)-dimensional Ising qu...
作者:Case, Nicola T.; Gurr, Sarah J.; Fisher, Matthew C.; Blehert, David S.; Boone, Charles; Casadevall, Arturo; Chowdhary, Anuradha; Cuomo, Christina A.; Currie, Cameron R.; Denning, David W.; Ene, Iuliana V.; Fritz-Laylin, Lillian K.; Gerstein, Aleeza C.; Gow, Neil A. R.; Gusa, Asiya; Iliev, Iliyan D.; James, Timothy Y.; Jin, Hailing; Kahmann, Regine; Klein, Bruce S.; Kronstad, James W.; Ost, Kyla S.; Peay, Kabir G.; Shapiro, Rebecca S.; Sheppard, Donald C.; Shlezinger, Neta; Stajich, Jason E.; Stukenbrock, Eva H.; Taylor, John W.; Wright, Gerard D.; Cowen, Leah E.; Heitman, Joseph; Segre, Julia A.
作者单位:University of Toronto; University of Exeter; Utrecht University; Imperial College London; United States Department of the Interior; United States Geological Survey; University of Toronto; RIKEN; Johns Hopkins University; University of Delhi; University of Delhi; Brown University; McMaster University; University of Wisconsin System; University of Wisconsin Madison; University of Manchester; Pasteur Network; Universite Paris Cite; Institut Pasteur Paris; University of Massachusetts System; University of Massachusetts Amherst; University of Manitoba; University of Manitoba; University of Exeter; Duke University; Cornell University; Weill Cornell Medicine; Cornell University; Weill Cornell Medicine; Cornell University; Weill Cornell Medicine; Cornell University; Weill Cornell Medicine; University of Michigan System; University of Michigan; University of California System; University of California Riverside; Max Planck Society; University of Wisconsin System; University of Wisconsin Madison; University of Wisconsin System; University of Wisconsin Madison; University of Wisconsin System; University of Wisconsin Madison; University of British Columbia; University of Colorado System; University of Colorado Anschutz Medical Campus; Stanford University; Stanford University; University of Guelph; McGill University; McGill University; Hebrew University of Jerusalem; University of Kiel; Max Planck Society; University of California System; University of California Berkeley; McMaster University; National Institutes of Health (NIH) - USA; NIH National Human Genome Research Institute (NHGRI)
摘要:Over the past billion years, the fungal kingdom has diversified to more than two million species, with over 95% still undescribed. Beyond the well-known macroscopic mushrooms and microscopic yeast, fungi are heterotrophs that feed on almost any organic carbon, recycling nutrients through the decay of dead plants and animals and sequestering carbon into Earth's ecosystems. Human-directed applications of fungi extend from leavened bread, alcoholic beverages and biofuels to pharmaceuticals, inclu...