D
David Skinner
Researcher at Lawrence Berkeley National Laboratory
Publications - 61
Citations - 9158
David Skinner is an academic researcher from Lawrence Berkeley National Laboratory. The author has contributed to research in topics: Petascale computing & Supercomputer. The author has an hindex of 23, co-authored 55 publications receiving 6473 citations. Previous affiliations of David Skinner include University of Kansas & University of Tennessee.
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Journal ArticleDOI
Commentary: The Materials Project: A materials genome approach to accelerating materials innovation
Anubhav Jain,Shyue Ping Ong,Geoffroy Hautier,Wei-Wei Chen,William D. Richards,Stephen Dacek,Shreyas Cholia,Dan Gunter,David Skinner,Gerbrand Ceder,Kristin A. Persson +10 more
TL;DR: The Materials Project (www.materialsproject.org) is a core program of the Materials Genome Initiative that uses high-throughput computing to uncover the properties of all known inorganic materials as discussed by the authors.
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The International Exascale Software Project roadmap
Jack Dongarra,Pete Beckman,Terry Moore,Patrick Aerts,Giovanni Aloisio,Jean-Claude Andre,David Barkai,Jean-Yves Berthou,Taisuke Boku,Bertrand Braunschweig,Franck Cappello,Barbara Chapman,Xuebin Chi,Alok Choudhary,Sudip S. Dosanjh,Thom H. Dunning,Sandro Fiore,Al Geist,Bill Gropp,Robert W. Harrison,Mark Hereld,Michael A. Heroux,Adolfy Hoisie,Koh Hotta,Zhong Jin,Yutaka Ishikawa,Fred Johnson,Sanjay Kale,Richard Kenway,David E. Keyes,Bill Kramer,Jesús Labarta,Alain Lichnewsky,Thomas Lippert,Bob Lucas,Barney Maccabe,Satoshi Matsuoka,Paul Messina,Peter Michielse,Bernd Mohr,Matthias S. Mueller,Wolfgang E. Nagel,Hiroshi Nakashima,Michael E. Papka,Daniel A. Reed,Mitsuhisa Sato,Edward Seidel,John Shalf,David Skinner,Marc Snir,Thomas Sterling,Rick Stevens,Frederick H. Streitz,Bob Sugar,Shinji Sumimoto,William Tang,John Taylor,Rajeev Thakur,Anne E. Trefethen,Mateo Valero,Aad J. van der Steen,Jeffrey S. Vetter,Peg Williams,Robert W. Wisniewski,Katherine Yelick +64 more
TL;DR: The work of the community to prepare for the challenges of exascale computing is described, ultimately combing their efforts in a coordinated International Exascale Software Project.
Journal ArticleDOI
Femtosecond investigation of electron trapping in semiconductor nanoclusters
Journal ArticleDOI
Taking snapshots of photosynthetic water oxidation using femtosecond X-ray diffraction and spectroscopy
Jan Kern,Rosalie Tran,Roberto Alonso-Mori,Sergey Koroidov,Nathaniel Echols,Johan Hattne,Mohamed Ibrahim,Sheraz Gul,Hartawan Laksmono,Raymond G. Sierra,Richard J. Gildea,Guangye Han,Julia Hellmich,Julia Hellmich,Benedikt Lassalle-Kaiser,Ruchira Chatterjee,Aaron S. Brewster,Claudiu A. Stan,Carina Glöckner,Alyssa Lampe,D. DiFiore,Despina Milathianaki,Alan Fry,M. Marvin Seibert,Jason E. Koglin,Erik Gallo,Jens Uhlig,Dimosthenis Sokaras,Tsu-Chien Weng,Petrus H. Zwart,David Skinner,Michael J. Bogan,Marc Messerschmidt,Pieter Glatzel,Garth J. Williams,Sébastien Boutet,Paul D. Adams,Athina Zouni,Athina Zouni,Johannes Messinger,Nicholas K. Sauter,Uwe Bergmann,Junko Yano,Vittal K. Yachandra +43 more
TL;DR: The spectra show that the initial O-O bond formation, coupled to Mn-reduction, does not yet occur within 250 μs after the third flash, and the initial frames in a molecular movie of the structural changes during the catalytic reaction in photosystem II are represented.
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Femtosecond study of the intensity dependence of electron-hole dynamics in TiO2 nanoclusters
D. Philip Colombo,Kirsten A. Roussel,Jamal Saeh,David Skinner,Joseph J. Cavaleri,Robert M. Bowman +5 more
TL;DR: In this article, the dynamics of charge carrier trapping and recombination as a function of pump fluence of 20 A diameter TiO2 particles in aqueous solutions are measured and a global fit to the data predicts a bulk second-order recombination rate constant of (1.8 ± 0.7) × 10−10 cm3 s−1 for trapped electrons with holes.