Zobrazeno 1 - 10
of 67
pro vyhledávání: '"T.J. Shea"'
Autor:
L. Segui, I. Dolenc Kittelmann, T. Papaevangelou, S. Aune, F. Benedetti, F. Gougnaud, C. Lahonde, P. Legou, Y. Mariette, J. Marroncle, B. Mikulec, V. Nadot, G. Tsiledakis, T.J. Shea, C. Zamantzas
Publikováno v:
Journal of Instrumentation. 18:P01013
A new type of beam loss monitor has been developed based on the detection of fast neutrons produced by beam losses in hadron linear accelerators. This neutron sensitive Beam Loss Monitor (nBLM) has been concieved to fulfil the requirements of the Eur
Autor:
Caleb H. Farny, Bernie Riemer, Shoichi Hasegawa, David L. West, R.L. Sangrey, David K Felde, Andrew L. Kaminsky, Ashraf A Abdou, Mark W Wendel, T.J. Shea, Takashi Naoe, Hiroyuki Kogawa
Publikováno v:
Journal of Nuclear Materials. 450:192-203
Populations of small helium gas bubbles were introduced into a flowing mercury experiment test loop to evaluate mitigation of beam-pulse induced cavitation damage and pressure waves. The test loop was developed and thoroughly tested at the Spallation
Autor:
Yuelin Li, David Attwood, John M. Byrd, Ross Schlueter, T.J. Shea, Peter Denes, Franz X. Kaertner, Anne Sakdinawat, L. Moog, P. Siddons
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 623:910-920
We present the summary from the Accelerator Instrumentation and Technology working group, one of the five working groups that participated in the BES-sponsored Workshop on Accelerator Physics of Future Light Sources held in Gaithersburg, MD September
Akademický článek
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Autor:
P.A. Thompson, R. Connolly, C. Degen, Todd Satogata, P. Cerniglia, D. Gassner, J. Mead, T.J. Shea, J. Cupolo, R. Sikora, M. Bai, R. Witkover, Vadim Ptitsyn, R. Fliller, A. Drees, P. Cameron
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 499:372-387
RHICinstrumentationsystemsmustaccuratelycharacterizediversebeamsofupto110bunchesineachofthetwocolliderrings,rangingfrom10 11 protons/bunchat250GeVto10 9 Au þ79 ions/bunchat100GeV=nucleon; aswellaslower-intensitycommissioningandpilotbunches.Thecollid
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 443:215-222
The Relativistic Heavy Ion Collider (RHIC) at Brookhaven National Lab was commissioned during the summer of 1999. Transverse beam profiles on RHIC are measured with ionization profile monitors (IPMs). An IPM measures beam profiles by collecting the e
Akademický článek
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Publikováno v:
Proceedings of the 1999 Particle Accelerator Conference (Cat. No.99CH36366).
The RHIC Wall Current Monitor System will provide data which closely represents the longitudinal profile of bunches in the RHIC ring. This data will be available throughout the machine cycle, from injection through acceleration, transition, transfer
Publikováno v:
Proceedings of International Conference on Particle Accelerators.
The coupling impedance of accelerator devices is measured by simulating the beam with a central wire and measuring the scattering parameters of the system. The wire pipe system forms a mismatch with the 50 ohm transmission line. An integrated softwar
Publikováno v:
Proceedings of International Conference on Particle Accelerators.
Colloid dispersions of magnetite were used at SLAC and KEK to locate multipole magnet centers. We study here possible adaption of this method, to align RHIC magnets. A procedure for locating magnetic centers with respect to external fiducial markers,