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Main linac lattice design and optimization for E_(cm)=1 TeV CLIC

Main linac lattice design and optimization for Ecm=1 TeV CLIC
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摘要 The Compact Linear Collider (CLIC) is a future e+e linear collider. The CLIC study concentrated on a design of center-of-mass energy of 3 TeV and demonstrated the feasibility of the technology. However, the physics also demands lower energy collision. To satisfy this, CLIC can be built in stages. The actual stages will depend on LHC results. Some specific scenarios of staged constructions have been shown in CLIC Concept Design Report (CDR). In this paper, we concentrate on the main linac lattice design for Ecm=l TeV CLIC aiming to upgrade from E~.,=500 GeV CLIC and then to Ecru=3 TeV one. This main linac accelerates the electron or positron beam froth 9 GeV to 500 GeV. A primary lattice design based on the 3 TeV CLIC main linac design and its optimization based on the beam dynamics study will be presented. As we use the same design principles as 3TeV CLIC main linac, this optimization is basically identical to the 3 TeV one. All the simulations results are obtained using the tracking code PLACET. The Compact Linear Collider (CLIC) is a future e+e linear collider. The CLIC study concentrated on a design of center-of-mass energy of 3 TeV and demonstrated the feasibility of the technology. However, the physics also demands lower energy collision. To satisfy this, CLIC can be built in stages. The actual stages will depend on LHC results. Some specific scenarios of staged constructions have been shown in CLIC Concept Design Report (CDR). In this paper, we concentrate on the main linac lattice design for Ecm=l TeV CLIC aiming to upgrade from E~.,=500 GeV CLIC and then to Ecru=3 TeV one. This main linac accelerates the electron or positron beam froth 9 GeV to 500 GeV. A primary lattice design based on the 3 TeV CLIC main linac design and its optimization based on the beam dynamics study will be presented. As we use the same design principles as 3TeV CLIC main linac, this optimization is basically identical to the 3 TeV one. All the simulations results are obtained using the tracking code PLACET.
出处 《Chinese Physics C》 SCIE CAS CSCD 2014年第6期117-124,共8页 中国物理C(英文版)
基金 Supported by National Natural Science Foundation of China(11175192)
关键词 CLIC main linac lattice design beam dynamics CLIC, main linac, lattice design, beam dynamics
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参考文献9

  • 1Aicheler M, Burrows P, Draper M et al. CLIC Conceptual Design Report, CERN-2012-007.
  • 2Balakin V, Novakhatsky A, Smirnow V. Proc. of 12th Int. Conf. on High Energy Accelerators, Fermilab, 1983.
  • 3Schulte D. Beam-Based Alignment in the New CILC Main Linac, CLIC-Note-804.
  • 4Latina A et al. Recent Improvements in the Tracking Code PLACET. Proc. of 11th biennial European Particle Accelerator Conference, Genoa, Italy, 2008.
  • 5Baklakov B A et al. Proc. of IEEE Particle Accelerator Conf., San Francisco, USA, 1991. 3273-3275.
  • 6Schulte D. The Lectures on Main Linac. 5th Linear Collider School. 2010.
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