S
S. Nath
Researcher at Los Alamos National Laboratory
Publications - Â 38
Citations - Â 344
S. Nath is an academic researcher from Los Alamos National Laboratory. The author has contributed to research in topics: Beam (structure) & Linear particle accelerator. The author has an hindex of 9, co-authored 38 publications receiving 301 citations.
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Journal ArticleDOI
The Spallation Neutron Source accelerator system design
S. Henderson,W.J. Abraham,Alexander Aleksandrov,C.K. Allen,Jorge Alonso,D. Anderson,D. Arenius,T. Arthur,S. Assadi,J.J Ayers,P. Bach,V. Badea,R.E. Battle,J. Beebe-Wang,B. Bergmann,J. Bernardin,T.S. Bhatia,J. Billen,T. Birke,E.A. Bjorklund,M. Blaskiewicz,B. Blind,Willem Blokland,V. Bookwalter,D. Borovina,S. Bowling,J. Bradley,C. Brantley,J. Brennan,J. Brodowski,Samuel D. J. Brown,R. Brown,D. Bruce,N. Bultman,P. Cameron,I.E. Campisi,Fabio Casagrande,N. Catalan-Lasheras,Mark Champion,Z. Chen,D. Cheng,Y. Cho,K. Christensen,C.M. Chu,J. Cleaves,R. Connolly,T. Cote,Sarah Cousineau,K.R. Crandall,J. Creel,Mark Crofford,P. Cull,R. Cutler,R. Dabney,L.R. Dalesio,E.F. Daly,R. Damm,Viatcheslav Danilov,Daniele Davino,K. Davis,C. Dawson,L. Day,Craig Deibele,Jean Delayen,J. DeLong,A. DeMello,W. DeVan,R. DiGennaro,K. Dixon,G. Dodson,Marc Doleans,Lawrence Doolittle,J. Doss,M. Drury,T. Elliot,Scott R. Ellis,J. Error,J. Fazekas,A. V. Fedotov,P. K. Feng,John Fischer,W. Fox,R. Fuja,W. Funk,John D Galambos,Venkatarao Ganni,Robert W. Garnett,X. Geng,R.C. Gentzlinger,M. Giannella,Paul Gibson,R. Gillis,J. Gioia,J. Gordon,R. A. Gough,J. Greer,W. Gregory,R. J. Gribble,Warren P. Grice,D. Gurd,P. Gurd,A. Guthrie,Harald Hahn,T. Hardek,R. Hardekopf,James F. Harrison,D. Hatfield,P. He,M. Hechler,F. Heistermann,S. Helus,T. Hiatt,S. Hicks,J.O. Hill,L. Hoff,M. Hoff,J. Hogan,M. Holding,P. Holik,Jeffrey A Holmes,N. Holtkamp,C. Hovater,M. Howell,Hsiao-Chaun Hseuh,A. Huhn,T. Hunter,T. Ilg,John D. Jackson,A. Jain,A. Jason,Dong-O Jeon,G. Johnson,A. Jones,S. Joseph,A. Justice,Yoon W. Kang,K. Kasemir,R. Keller,R. Kersevan,D.M. Kerstiens,M. Kesselman,Sang-Ho Kim,P. Kneisel,L. Kravchuk,T. Kuneli,Sergey S. Kurennoy,R. Kustom,Sungil Kwon,P. Ladd,R. Lambiase,Y.Y. Lee,Matthaeus Leitner,Ka-Ngo Leung,S. Lewis,C.J. Liaw,C. Lionberger,C. C. Lo,Cary D Long,Hans Ludewig,J. Ludvig,P. Luft,M.T. Lynch,H. Ma,R. MacGill,K. Macha,B. Madre,George Mahler,K. Mahoney,J. Maines,J. Mammosser,T. Mann,I. Marneris,P. Marroquin,R. L. Martineau,K. Matsumoto,M. McCarthy,C. McChesney,W. McGahern,P. McGehee,Wuzheng Meng,B. Merz,R.E. Meyer,B. Miller,Roland W. Mitchell,J. Mize,M. Monroy,J. Munro,G. Murdoch,J. Musson,S. Nath,Richard Nelson,J. O`Hara,D.K. Olsen,W. Oren,D. Oshatz,T. Owens,C. Pai,I. Papaphilippou,N. Patterson,J. Patterson,C. Pearson,T. Pelaia,M. Pieck,Chip Piller,Tomasz Plawski,Michael A Plum,J. Pogge,J. Power,T. Powers,Joseph Preble,M. Prokop,J. Pruyn,D. Purcell,J. Rank,D. Raparia,Alex Ratti,William A. Reass,K. Reece,D. Rees,A. Regan,M. J. Regis,Jani Reijonen,D. J. Rej,D. Richards,D. Richied,C. Rode,W. Rodriguez,M. Rodriguez,A. Rohlev,C. R. Rose,T. Roseberry,L. Rowton,W. Roybal,K. Rust,G. Salazer,J. Sandberg,J. Saunders,Thomas Schenkel,W. J. Schneider,D. Schrage,Jerome Schubert,F. Severino,R. Shafer,T. Shea,Andrei Shishlo,H. Shoaee,C. Sibley,J. Sims,S. Smee,J.D. Smith,Karen H. Smith,R. Spitz,John Staples,P. Stein,M. Stettler,M. Stirbet,Martin P. Stockli,W. Stone,D. Stout,J. Stovall,W. Strelo,H. Strong,R. Sundelin,D. Syversrud,M. Szajbler,H. Takeda,Paul J. Tallerico,J. Tang,E. Tanke,Steven Tepikian,R. Thomae,David H. Thompson,D. Thomson,M. Thuot,C. Treml,N. Tsoupas,Joseph Tuozzolo,W. Tuzel,A. Vassioutchenko,Steve Virostek,J. Wallig,P. Wanderer,Yi-Ming Wang,J.G. Wang,T.P. Wangler,D. Warren,Jie Wei,D. Weiss,R. W. Welton,J. Weng,W.T. Weng,Mark W. Wezensky,M. White,T. Whitlatch,D. Williams,E. Williams,K. Wilson,M. Wiseman,R.L. Wood,P. Wright,A. Wu,N. Ybarrolaza,K. Young,L.M. Young,R. Yourd,A. Zachoszcz,A. Zaltsman,S.Y. Zhang,W.C Zhang,Yuxuan Zhang,Alexander Zhukov +310 more
TL;DR: The Spallation Neutron Source (SNS) as discussed by the authors was designed and constructed by a collaboration of six U.S. Department of Energy national laboratories and consists of a 1 GeV linear accelerator and accumulator ring providing 1.4 MW of proton beam power in microsecond-long beam pulses to a liquid mercury target for neutron production.
Journal ArticleDOI
Long-pulse beam stability experiments on the DARHT-II linear induction accelerator
Carl Ekdahl,E.O. Abeyta,P. Aragon,R. Archuleta,R.R. Bartsch,H. Bender,R. Briggs,W. Broste,C. Carlson,K.C.D. Chan,D. Dalmas,S. Eversole,Daniel K. Frayer,R. Gallegos,J. Harrison,Thomas Patrick Hughes,E. Jacquez,D. Johnson,J. B. Johnson,B.T. McCuistian,N. Montoya,C. Mostrom,S. Nath,David M. Oro,L. Rowton,M. Sanchez,R. Scarpetti,Martin Schauer,Martin Schulze,Y. Tang,A. Tipton,C.Y. Tom +31 more
TL;DR: In this paper, the DARHT-II linear induction accelerator (LIA) produces a 2kA, 17-MeV electron beam in a 1600-ns flat-top pulse.
Journal ArticleDOI
Suppressing beam-centroid motion in a long-pulse linear induction accelerator
Carl Ekdahl,E.O. Abeyta,R. Archuleta,H. Bender,W. Broste,C. Carlson,Gerald Cook,Daniel K. Frayer,J. Harrison,Thomas Patrick Hughes,J. B. Johnson,E. Jacquez,B. Trent McCuistian,N. Montoya,S. Nath,K. Nielsen,C. R. Rose,Martin Schulze,H.V. Smith,Carsten Thoma,C.Y. Tom +20 more
TL;DR: In this paper, the authors describe the sources of beam motion and the measures they have taken to minimize it in the dual-axis radiography of hydrodynamic testing (DARHT) facility.
Superconducting Linac for the SNS
J. Stovall,S. Nath,J. Billen,L. Young,M.T. Lynch,D. Rees,John D Galambos,D. Jeon,D. Raparia,J. Wei,R. Sundelin,K.R. Crandall,C. Pagani,P. Pierini +13 more
TL;DR: The SRF linac as discussed by the authors accelerates the beam from 186 to 1250 MeV through 117 elliptical, multi-cell niobium cavities, and the expected beam dynamics performance is described.
Journal ArticleDOI
Beam dynamics in a long-pulse linear induction accelerator
Carl Ekdahl,E.O. Abeyta,P. Aragon,R. Archuleta,Gerald Cook,D. Dalmas,K. Esquibel,R. Gallegos,Robert W. Garnett,J. Harrison,J. B. Johnson,E. Jacquez,B. Trent McCuistian,N. Montoya,S. Nath,K. Nielsen,David M. Oro,C. R. Rose,M. Sanchez,Martin Schauer,Martin Schulze,Gerald J. Seitz,V. Smith,R. Temple,R. Anaya,George J Caporaso,F.W. Chambers,Y.-J. Chen,S. Falabella,Gary Guethlein,B.A. Raymond,R. Richardson,R. Scarpetti,J. Watson,J.T. Weir,H. Bender,W. Broste,C. Carlson,Daniel K. Frayer,C.Y. Tom,C Trainham,James Williams,Thomas C. Genoni,Thomas Patrick Hughes,Carsten Thoma,B. Prichard +45 more
TL;DR: The second axis of the Dual Axis Radiography of Hydrodynamic Testing (DARHT) facility produces up to four radiographs within an interval of 1.6 microseconds by slicing four micro-pulses out of a long 1.8-kA, 16.5-MeV electron beam pulse and focusing them onto a bremsstrahlung converter target as discussed by the authors.