Zobrazeno 1 - 10
of 66
pro vyhledávání: '"Grelick, A."'
Autor:
Grelick, A. E., Arnold, N., Berg, S., Dohan, D., Goeppner, G., Kang, Y. W., Nassiri, A., Pasky, S., Pile, G., Smith, T., Stein, S. J.
Publikováno v:
eConf C000821 (2000) THE07
An S-band linear accelerator is the source of particles and the front end of the Advanced Photon Source injector. In addition, it supports a low-energy undulator test line (LEUTL) and drives a free-electron laser (FEL). A waveguide-switching and dist
Externí odkaz:
http://arxiv.org/abs/physics/0008154
Publikováno v:
eConf C000821 (2000) THc10
The S-band linear accelerator, which was built to be the source of particles and the front end of the Advanced Photon Source injector, is now also being used to support a low-energy undulator test line (LEUTL) and to drive a free-electron laser (FEL)
Externí odkaz:
http://arxiv.org/abs/physics/0008122
Autor:
Arnold, N.D, Attig, J, Banks, G, Bechtold, R, Beczek, K, Benson, C, Berg, S, Berg, W, Biedron, S.G, Biggs, J.A, Borland, M, Boerste, K, Bosek, M, Brzowski, W.R, Budz, J, Carwardine, J.A, Castro, P, Chae, Y.-C, Christensen, S, Clark, C, Conde, M, Crosbie, E.A, Decker, G.A, Dejus, R.J, DeLeon, H, Den Hartog, P.K, Deriy, B.N, Dohan, D, Dombrowski, P, Donkers, D, Doose, C.L, Dortwegt, R.J, Edwards, G.A, Eidelman, Y, Erdmann, M.J, Error, J, Ferry, R, Flood, R, Forrestal, J, Freund, H, Friedsam, H, Gagliano, J, Gai, W, Galayda, J.N, Gerig, R, Gilmore, R.L, Gluskin, E, Goeppner, G.A, Goetzen, J, Gold, C, Gorski, A.J, Grelick, A.E, Hahne, M.W, Hanuska, S, Harkay, K.C, Harris, G, Hillman, A.L, Hogrefe, R, Hoyt, J, Huang, Z, Jagger, J.M, Jansma, W.G, Jaski, M, Jones, S.J, Keane, R.T, Kelly, A.L, Keyser, C, Kim, K.-J, Kim, S.H, Kirshenbaum, M, Klick, J.H, Knoerzer, K, Koldenhoven, R.J, Knott, M, Labuda, S, Laird, R, Lang, J, Lenkszus, F, Lessner, E.S, Lewellen, J.W, Li, Y, Lill, R.M, Lumpkin, A.H, Makarov, O.A, Markovich, G.M, McDowell, M, McDowell, W.P, McNamara, P.E, Meier, T, Meyer, D, Michalek, W, Milton, S.V *, Moe, H, Moog, E.R, Morrison, L, Nassiri, A, Noonan, J.R, Otto, R, Pace, J, Pasky, S.J, Penicka, J.M, Pietryla, A.F, Pile, G, Pitts, C, Power, J, Powers, T, Putnam, C.C, Puttkammer, A.J, Reigle, D, Reigle, L, Ronzhin, D, Rotela, E.R, Russell, E.F, Sajaev, V, Sarkar, S, Scapino, J.C, Schroeder, K, Seglem, R.A, Sereno, N.S, Sharma, S.K, Sidarous, J.F, Singh, O, Smith, T.L, Soliday, R, Sprau, G.A, Stein, S.J, Stejskal, B, Svirtun, V, Teng, L.C, Theres, E, Thompson, K, Tieman, B.J, Torres, J.A, Trakhtenberg, E.M, Travish, G, Trento, G.F, Vacca, J, Vasserman, I.B, Vinokurov, N.A, Walters, D.R, Wang, J, Wang, X.J, Warren, J, Wesling, S, Weyer, D.L, Wiemerslage, G, Wilhelmi, K, Wright, R, Wyncott, D, Xu, S, Yang, B.-X, Yoder, W, Zabel, R.B
Publikováno v:
In Nuclear Inst. and Methods in Physics Research, A 2001 475(1):28-37
Autor:
Yuelin Li, Bingxin Yang, Efim Gluskin, W.G. Jansma, R.T. Keane, S. Xu, L. Morrison, B. Stejskal, D. Donkers, D. Meyer, D. Reigle, J. Attig, E.S. Lessner, F. Lenkszus, Kwang-Je Kim, J. Budz, William Berg, R.B. Zabel, W.R. Brzowski, R. Bechtold, G. Pile, John Power, K. Beczek, C. Benson, R. Ferry, G. Banks, T. Powers, M. Jaski, J. A. Biggs, R. Flood, S.J. Jones, K. Knoerzer, John Galayda, G.M. Markovich, C. Clark, J.H. Klick, R. Soliday, G.A. Sprau, G. Wiemerslage, V. Svirtun, Gil Travish, M. Erdmann, R.L. Gilmore, R.J. Dortwegt, J.C. Scapino, R. Hogrefe, R.A. Seglem, S. Labuda, K. Schroeder, J. Jagger, C.L. Doose, M. Knott, D. Ronzhin, Vadim Sajaev, Dean Walters, J.A. Torres, N.D. Arnold, M. W. Hahne, H. DeLeon, M. McDowell, J. Hoyt, S. Hanuska, Sang-Hoon Kim, J.R. Noonan, S. Christensen, T. Meier, Katherine Harkay, W. Michalek, A.L. Kelly, Michael Borland, A.J. Puttkammer, S. Berg, A. E. Grelick, J. Error, S.J. Pasky, D.L. Weyer, K. Boerste, Brian Tieman, Oleg Makarov, B. Deriy, W.P. McDowell, Alireza Nassiri, E. Theres, M. Bosek, J. Goetzen, S.J. Stein, Henry P. Freund, E. A. Crosbie, P. Castro, G.F. Trento, R. Gerig, W. Yoder, Sandra Biedron, Zhirong Huang, Emil Trakhtenberg, Yong-Chul Chae, J.M. Penicka, C. Gold, M.E. Conde, J.F. Sidarous, Robert Laird, E.R. Rotela, J.A. Carwardine, C.C. Putnam, Xuelong Wang, S. Sarkar, P.E. McNamara, G.A. Edwards, O. Singh, D. Wyncott, J. Warren, Y. I. Eidelman, J. Forrestal, R. Wright, T.L. Smith, A.J. Gorski, L. Reigle, R. Otto, C. Keyser, H. Friedsam, Wei Gai, L.C. Teng, Nicholas Sereno, A.F. Pietryla, Roger J. Dejus, G.A. Goeppner, K. Wilhelmi, M. Kirshenbaum, John W. Lewellen, Nikolay Vinokurov, S. Wesling, R.M. Lill, P.K. Den Hartog, K. Thompson, Sushil K. Sharma, P. Dombrowski, Alex H. Lumpkin, J. Pace, G. Harris, H. Moe, Stephen V. Milton, Ju Wang, Elizabeth Moog, Isaac Vasserman, A.L. Hillman, E.F. Russell, J. Gagliano, C. Pitts, J. Lang, R.J. Koldenhoven, J. Vacca, Glenn Decker, D. Dohan
Publikováno v:
The Lens
Exponential growth of self-amplified spontaneous emission at 530 nm was first experimentally observed at the Advanced Photon Source low-energy undulator test line in December 1999. Since then, further detailed measurements and analysis of the results
Autor:
Efim Gluskin, Nikolai A. Vinokurov, Arthur Grelick, Yong-Chul Chae, Suk Hong Kim, Alex H. Lumpkin, John Galayda, Elizabeth Moog, Justin Jones, Patric Den Hartog, Isaac Vasserman, Dean Walters, Ned D. Arnold, E. A. Crosbie, Gregory M. Markovich, James R. Maines, Emil Trakhtenberg, Stephen V. Milton, Bingxin Yang, Ju Wang, Y.W. Kang, William Berg, John W. Lewellen, Roger J. Dejus, Steven Berg, H. Friedsam, Ali Nassiri
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 407:210-214
A Low-Energy Undulator Test Line (LEUTL) is under construction at the Advanced Photon Source (APS). Its purpose is to fully characterize innovative, future-generation undulators, and to act as a test line in pursuit of generating coherent radiation a
Publikováno v:
2007 IEEE Particle Accelerator Conference (PAC).
The Advanced Photon Source Deflecting Cavity System for producing short X-ray pulses uses two multi-cell, S-band cavities to apply a deflecting voltage to the stored electron beam ahead of an undulator that supports a beamline utilizing picosecond X-
Publikováno v:
Proceedings of the 2005 Particle Accelerator Conference.
A particle accumulator ring (PAR) is used at the Advanced Photon Source (APS) to collect multiple linac bunches and compress them into a 0.3-ns single bunch for booster injection. A 9.77-MHz fundamental and a 117.3-MHz harmonic rf system (RF12) are e
Publikováno v:
Proceedings of the 2003 Bipolar/BiCMOS Circuits and Technology Meeting (IEEE Cat. No.03CH37440).
The high-power S-band switching system for the Advanced Photon Source (APS) linear accelerator (linac) provides for a hot spare for two of the four S-band transmitters. The system utilizes four-port S-band switches of aluminum construction that are p
Autor:
Alireza Nassiri, S. Pasky, T.L. Smith, S. Berg, M. Givens, R. Dortwegt, A.E. Grelick, K.J. Beczek, John W. Lewellen, D.A. Briddick
Publikováno v:
Proceedings of the 2003 Bipolar/BiCMOS Circuits and Technology Meeting (IEEE Cat. No.03CH37440).
The Advanced Photon Source (APS) has constructed an injector test stand (ITS) for high-brightness electron beam research. The test stand includes three rf ports with independent phase and power control, beamline supports designed for rapid reconfigur
Autor:
T. Barsz, A.E. Grelick, D.A. Briddick, S. Berg, G. Goeppner, M. Martens, W. Jansma, A. Lopez, John W. Lewellen, S. Wesling, W. Michalek, M. Given
Publikováno v:
Proceedings of the 2003 Bipolar/BiCMOS Circuits and Technology Meeting (IEEE Cat. No.03CH37440).
The high-power S-band feed subsystem and the versatile method of beamline construction have been combined to provide for further testing of a unique gun that incorporates three cavities and requires three separate S-band feeds. Completed in December