Integration of 175-MHz LIPAc RF System and RFQ Linac for Beam Commissioning
暂无分享,去创建一个
K. Takayama | K. Hayashi | Y. Hirata | A. Palmieri | D. Gex | H. Dzitko | A. Kasugai | K. Sakamoto | I. Kirpitchev | K. Kondo | M. Sugimoto | P. Cara | A. Pisent | I. Moya | M. Comunian | T. Shinya | J. Mollá | T. Akagi | N. Kubo | P. Méndez | L. Bellan | E. Fagotti | A. Jokinen | F. Grespan | F. Scantamburlo | S. Maebara | L. Antoniazzi | D. Regidor | Álvaro Marchena | M. Montis | T. Ebisawa | Y. Shimosaki | M. Weber | H. Kobayashi | T. Nakayama | Cristina la de Morena | Á. Marchena
[1] R. Heidinger,et al. The European approach to the fusion-like neutron source: the IFMIF-DONES project , 2019, Nuclear Fusion.
[2] Shu-xin Zheng,et al. The Test of RF Breakdowns of CPHS RFQ , 2019 .
[3] R. Heidinger,et al. Beam diagnostics of an ECR ion source on LIPAc injector for prototype IFMIF beam accelerator , 2018, Fusion Engineering and Design.
[4] Ivan Podadera,et al. Linear IFMIF Prototype Accelerator (LIPAc): Installation activities for Phase-B beam commissioning in Rokkasho , 2018 .
[5] R. Heidinger,et al. Status of the RFQ linac installation and conditioning of the Linear IFMIF Prototype Accelerator , 2018 .
[6] A. Palmieri,et al. Tuning the IFMIF 5MeV RFQ Accelerator , 2017 .
[7] A. Pisent. Towards Commissioning of the IFMIF RFQ , 2017 .
[8] R. Panero,et al. Preparation and Installation of IFMIF-EVEDA RFQ at Rokkasho Site , 2017 .
[9] R. Panero,et al. Status of IFMIF-EVEDA RFQ , 2017 .
[10] Eiichi Wakai,et al. IFMIF, the European-Japanese efforts under the Broader Approach Agreement towards a Li(d,xn) neutron source:current status and future options , 2016 .
[11] Ivan Podadera,et al. The Linear IFMIF Prototype Accelerator (LIPAC) Design Development under the European-Japanese Collaboration , 2016 .
[12] D. Gex,et al. Mechanical Integration of the IFMIF-EVEDA Radio Frequency Quadrupole , 2016 .
[13] J. Knaster,et al. Materials research for fusion , 2016, Nature Physics.
[14] R. Heidinger,et al. Operation and commissioning of IFMIF (International Fusion Materials Irradiation Facility) LIPAc injector. , 2016, The Review of scientific instruments.
[15] Enric Bargalló,et al. The accomplishment of the Engineering Design Activities of IFMIF/EVEDA: The European–Japanese project towards a Li(d,xn) fusion relevant neutron source , 2015, 2112.14211.
[16] A. Facco,et al. Progress in IFMIF Engineering Validation and Engineering Design Activities , 2013 .
[17] Masayoshi Sugimoto,et al. Main baseline of IFMIF/EVEDA project , 2009 .
[18] R. Heidinger,et al. IFMIF/EVEDA RFQ Preliminary Beam Characterization , 2019 .
[19] T. Nozawa,et al. DESIGN PROGRESS OF ADVANCED FUSION NEUTRON SOURCE FOR JA / DEMO FUSION REACTOR , 2018 .
[20] D. Regidor,et al. Fully Digital and White Rabbit-Synchronized Low-Level RF System for LIPAc , 2018, IEEE Transactions on Nuclear Science.
[21] Maurizio Montis,et al. The Couplers for the IFMIF-EVEDA RFQ High Power Test Stand at LNL: Design, Construction and Operation , 2014 .
[22] M. Comunian,et al. IFMIF-EVEDA RFQ DESIGN , 2008 .
[23] H. Safa,et al. Multiple Coupling and Beam Loading of a RF Cavity , 1998 .