Physics design for the C-ADS main linac based on two different injector design schemes
Fang Yan, Zhihui Li, Cai Meng, Jing-Yu Tang, Biao Sun
Abstract
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Fang Yan, Zhihui Li, Cai Meng, Jing-Yu Tang, Biao Sun
Abstract
Open-access reader
The China ADS (C-ADS) project proposes to build a 1000 MW Accelerator Driven sub-critical System around 2032. The accelerator will work in CW mode with 10 mA in beam current and 1.5 GeV in final beam energy. The linac is composed of two major sections: the injector section and the main linac section. There are two different schemes for the injector section. The Injector- I scheme is based on a 325 MHz RFQ and superconducting spoke cavities of the same RF frequency and the Injector- II scheme is based on a 162.5 MHz RFQ and superconducting HWR cavities of the same frequency. The main linac design will be different for different injector choices. The two different designs for the main linac have been studied according to the beam characteristics from the different injector schemes.
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The China ADS (C-ADS) project proposes to build a 1000 MW Accelerator Driven sub-critical System around 2032. The accelerator will work in CW mode with 10 mA in beam current and 1.5 GeV in final beam energy. The linac is composed of two major sections: the injector section and the main linac section. There are two different schemes for the injector section. The Injector- I scheme is based on a 325 MHz RFQ and superconducting spoke cavities of the same RF frequency and the Injector- II scheme is based on a 162.5 MHz RFQ and superconducting HWR cavities of the same frequency. The main linac design will be different for different injector choices. The two different designs for the main linac have been studied according to the beam characteristics from the different injector schemes.
Key concepts: Injector, Linear particle accelerator, Physics, Beam (structure), Nuclear physics, Particle accelerator, Beam energy, Nuclear engineering