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Publication
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Beam-induced wakefield observation in X -band choke-mode cavities
/ Zha, Hao (Tsinghua U., Beijing ; Argonne, HEP ; CERN) ; Jing, Chunguang (Argonne, HEP ; Euclid Techlabs, Solon) ; Qiu, Jiaqi (Argonne, HEP ; Euclid Techlabs, Solon) ; Wisniewski, Eric E (Argonne, HEP) ; Conde, Manoel (Argonne, HEP) ; Power, John G (Argonne, HEP) ; Doran, Darrell S (Argonne, HEP) ; Liu, Wanming (Argonne, HEP) ; Shi, Jiaru (Tsinghua U., Beijing ; CERN) ; Li, Chen (Tsinghua U., Beijing ; Argonne, HEP) et al.
The X-band choke-mode structure is currently being studied as an alternative design for the accelerating structure of the compact linear collider (CLIC) main linac. The geometry of the choke-mode structure is designed to ensure the strong suppression of the beam-induced long-range transverse wakefield and therefore maintain the stability and quality of the beam in the CLIC main linac. [...]
2016 - 9 p.
- Published in : Phys. Rev. Accel. Beams 19 (2016) 081001
Fulltext: PDF;
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An X-band Dielectric-based Wakefield Power Extractor
/ Jing, Chunguang (Euclid Techlabs, Solon) ; Antipov, Sergey (Euclid Techlabs, Solon) ; Kanareykin, Alexei (Euclid Techlabs, Solon) ; Schoessow, Paul (Euclid Techlabs, Solon) ; Conde, Manoel (Argonne) ; Gai, Wei (Argonne) ; Power, John (Argonne) ; Dolgashev, Valery (SLAC) ; Lewandowski, James (SLAC) ; Tantawi, Sami (SLAC) et al.
An X-band dielectric-based wakefield power extractor is under development to function as a high power rf source primarily for Two Beam Accelerator applications. A low surface electric field to gradient ratio and low fabrication cost are two main advantages of the dielectric-loaded accelerating/decelerating structure. [...]
2013 - 3 p.
- Published in : (2013) , pp. WEPFI090
Fulltext: PDF; External link: JACoW server
In : 4th International Particle Accelerator Conference, Shanghai, China, 12 - 17 May 2013, pp.WEPFI090
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Planning the Future of U.S. Particle Physics (Snowmass 2013): Chapter 6: Accelerator Capabilities
/ Barletta, W.A. (MIT, LNS) ; Bai, M. (Brookhaven) ; Battaglia, M. (UC, Berkeley) ; Bruning, O. (CERN) ; Byrd, J. (LBL, Berkeley) ; Ent, R. (Tohoku U. ; Jefferson Lab) ; Flanagan, J. (Sokendai, Tsukuba ; KEK, Tsukuba) ; Gai, W. (Argonne) ; Galambos, J. (ORNL, Oak Ridge (main) ; SNS Project, Oak Ridge) ; Hoffstaetter, G. (Cornell U., Phys. Dept. ; Cornell U., CLASSE) et al.
This report is organized as a collection of the executive summaries of each of the six working groups: Energy Frontier proton colliders, Energy Frontier lepton colliders, Intensity Frontier proton sources, Intensity Frontier electron accelerators, electron-ion colliders, and accelerator research and test-beam facilities..
arXiv:1401.6114 ; FERMILAB-CONF-14-019-CH06 ; SLAC-PUB-15978.
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2014. - 26 p.
Fulltext - Proceedings write-up on ECONF - PDF on ECONF - Full text
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6.
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The International Linear Collider Technical Design Report
, v.3.II : accelerator baseline design.
/ Adolphsen, Chris ; Barone, Maura (ed.) ; Barish, Barry (ed.) ; Buesser, Karsten (ed.) ; Burrows, Philip (ed.) ; Carwardine, John (ed.) ; Clark, Jeffrey (ed.) ; Durand, Helene Mainaud (ed.) ; Dugan, Gerry (ed.) ; Elsen, Eckhard (ed.) ; Enomoto, Atsushi (ed.) ; Foster, Brian (ed.) ; Fukuda, Shigeki (ed.) ; Gai, Wei (ed.) ; Gastal, Martin (ed.) ; Geng, Rongli (ed.) ; Ginsburg, Camille (ed.) ; Guiducci, Susanna (ed.) ; Harrison, Mike (ed.) ; Hayano, Hitoshi (ed.) ; Kershaw, Keith (ed.) ; Kubo, Kiyoshi (ed.) ; Kuchler, Victor (ed.) ; List, Benno (ed.) ; Liu, Wanming (ed.) ; Michizono, Shinichiro (ed.) ; Nantista, Christopher (ed.) ; Osborne, John (ed.) ; Palmer, Mark (ed.) ; Paterson, James McEwan (ed.) ; Peterson, Thomas (ed.) ; Phinney, Nan (ed.) ; Ross, Marc (ed.) ; Rubin, David (ed.) ; Seryi, Andrei (ed.) ; Sheppard, John (ed.) ; Solyak, Nikolay (ed.) ; Stapnes, Steinar (ed.) ; Tauchi, Toshiaki (ed.) ; Toge, Nobu (ed.) ; Walker, Nicholas (ed.) ; Yamamoto, Akira (ed.) ; Yokoya, Kaoru (ed.)
The International Linear Collider Technical Design Report (TDR) describes in four volumes the physics case and the design of a 500 GeV centre-of-mass energy linear electron-positron collider based on superconducting radio-frequency technology using Niobium cavities as the accelerating structures [...]
arXiv:1306.6328
ANL-HEP-TR-13-20 ; BNL-100603-2013-IR ; IRFU-13-59 ; Cockcroft-13-10 ; CERN-ATS-2013-037 ; CLNS-13-2085 ; DESY-13-062 ; FERMILAB-TM-2554 ; IHEP-AC-ILC-2013-001 ; ILC-REPORT-2013-040 ; INFN-13-04-LNF ; JAI-2013-001 ; JINR-E9-2013-35 ; JLAB-R-2013-01 ; KEK-Report-2013-1 ; KNU-CHEP-ILC-2013-1 ; LLNL-TR-635539 ; SLAC-R-1004 ; ILC-HiGrade-Report-2013-003.
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Geneva : CERN, 2013. - 339 p.
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ILC Technical Design Report - Fulltext - ILC TDR Vol 3.II - CERN library copies
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Schottky-Enabled Photoemission and Dark Current Measurements-Toward an Alternate Approach to Fowler-Nordheim Plot Analysis
/ Wisniewski, E E (IIT, Chicago ; Argonne (main)) ; Gai, W (Argonne (main)) ; Power, J (Argonne (main)) ; Du, Y (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Hua, J (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Yan, L (Tsinghua U., Beijing, Dept. Eng. Phys.) ; You, Y (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Chen, H (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Huang, W (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Tang, C (Tsinghua U., Beijing, Dept. Eng. Phys.) et al.
Field-emitted dark current, a major gradient-limiting factor in RF cavities, is usually analyzed via FowlerNordheim (FN) plots. Traditionally, field emission is attributed to geometrical perturbations on the bulk surface whosefield enhancement factor (beta) and the emitting area (A) can be extracted from the FN plot. [...]
2012 - 3 p.
- Published in : Conf. Proc.: C1205201 (2012) , pp. TUPPD069
External link: Published from JaCoW
In : 3rd International Particle Accelerator Conference, New Orleans, LA, USA, 20 - 25 May 2012, pp.1563-1565
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The International Linear Collider Technical Design Report
, v.3.I : Accelerator R&D in the Technical Design Phase.
/ Adolphsen, Chris ; Barone, Maura (ed.) ; Barish, Barry (ed.) ; Buesser, Karsten (ed.) ; Burrows, Philip (ed.) ; Carwardine, John (ed.) ; Clark, Jeffrey (ed.) ; Durand, Hélène Mainaud (ed.) ; Dugan, Gerry (ed.) ; Elsen, Eckhard (ed.) ; Enomoto, Atsushi (ed.) ; Foster, Brian (ed.) ; Fukuda, Shigeki (ed.) ; Gai, Wei (ed.) ; Gastal, Martin (ed.) ; Geng, Rongli (ed.) ; Ginsburg, Camille (ed.) ; Guiducci, Susanna (ed.) ; Harrison, Mike (ed.) ; Hayano, Hitoshi (ed.) ; Kershaw, Keith (ed.) ; Kubo, Kiyoshi (ed.) ; Kuchler, Victor (ed.) ; List, Benno (ed.) ; Liu, Wanming (ed.) ; Michizono, Shinichiro (ed.) ; Nantista, Christopher (ed.) ; Osborne, John (ed.) ; Palmer, Mark (ed.) ; Paterson, James McEwan (ed.) ; Peterson, Thomas (ed.) ; Phinney, Nan (ed.) ; Ross, Marc (ed.) ; Rubin, David (ed.) ; Seryi, Andrei (ed.) ; Sheppard, John (ed.) ; Solyak, Nikolay (ed.) ; Stapnes, Steinar (ed.) ; Tauchi, Toshiaki (ed.) ; Toge, Nobu (ed.) ; Walker, Nicholas (ed.) ; Yamamoto, Akira (ed.) ; Yokoya, Kaoru (ed.)
The International Linear Collider Technical Design Report (TDR) describes in four volumes the physics case and the design of a 500 GeV centre-of-mass energy linear electron-positron collider based on superconducting radio-frequency technology using Niobium cavities as the accelerating structures [...]
arXiv:1306.6353
ANL-HEP-TR-13-20 ; BNL-100603-2013-IR ; IRFU-13-59 ; CERN-ATS-2013-037 ; Cockcroft-13-10 ; CLNS-13-2085 ; DESY-13-062 ; FERMILAB-TM-2554 ; IHEP-AC-ILC-2013-001 ; ILC-REPORT-2013-040 ; INFN-13-04-LNF ; JAI-2013-001 ; JINR-E9-2013-35 ; JLAB-R-2013-01 ; KEK-Report-2013-1 ; KNU-CHEP-ILC-2013-1 ; LLNL-TR-635539 ; SLAC-R-1004 ; ILC-HiGrade-Report-2013-003.
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Geneva : CERN, 2013. - 219 p.
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ILC Technical Design Report - ILC TDR Vol 3.I - Fulltext - CERN library copies
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9.
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Development of an X-Band Dielectric-Based Wakefield Power Extractor for Potential CLIC Applications
/ Jing, C -J (Euclid Techlabs, Solon) ; Antipov, S P (Euclid Techlabs, Solon) ; Kanareykin, A (Euclid Techlabs, Solon) ; Schoessow, P (Euclid Techlabs, Solon) ; Conde, M E (Argonne (main)) ; Gai, W (Argonne (main)) ; Power, J G (Argonne (main)) ; Syratchev, I (CERN)
In the past decade, tremendous efforts have been put into the development of the CLIC Power Extraction and Transfer Structure (PETS), and significant progress has been made. However, one concern remains the manufacturing cost of the PETS, particularly considering the quantities needed for a TeV machine. [...]
2011
External link: Published version from JACoW
In : 2011 Particle Accelerator Conference, New York City, NY, USA, 28 Mar - 1 Apr 2011, pp.MOP116
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