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The Frankfurt neutron source FRANZ

机译:法兰克福中子源FRANZ

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A 2MeV proton beam will produce a quasi-Maxwellian neutron spectrum of around 30 keV by the Li-7(p, n) Be-7 reaction. The experiments are mainly focused on the measurement of differential neutron capture cross sections relevant for the astrophysical s-process in nuclear synthesis. Moreover, proton capture cross sections for the astrophysical p-process can be measured directly with the proton beam. For an efficient time of flight measurement of the neutron energies along the 0.7m long drift from the Li-target to the sample, 1 ns short, intense proton pulses are needed at the target. Additionally, to reach 10(7) n/cm(2)/s at the sample, a pulse repetition rate of 250 kHz is intended. After completion and successful running in, FRANZ will become a user facility with internal and external users. The 120 kV injector terminal and the 200mA proton source as well as the low-energy beam transport section and the FRANZ cave have been realized successfully. The 1.9MV RF accelerator consists of a combined 4-Rod-RFQ/IH-DTL-resonator and is in the RF tuning and power testing phase. The 2MeV transport and rebuncher section is ready for installation. In a first step FRANZ will offer experimental areas for neutron activation experiments and for proton beam experiments, as mentioned above. From the accelerator physics point of view, FRANZ will be an excellent facility for high current beam investigations and for beam wall interaction studies.
机译:2MeV质子束将通过Li-7(p,n)Be-7反应产生大约30keV的准麦克斯韦中子能谱。实验主要集中在核合成中与天体s过程有关的差分中子俘获截面的测量。此外,可以使用质子束直接测量天体p过程的质子捕获截面。为了对中子能量沿着从Li目标到样品的0.7m长漂移进行有效的飞行时间测量,需要在目标上短1 ns的短质子脉冲。此外,要在样品处达到10(7)n / cm(2)/ s,应采用250 kHz的脉冲重复频率。完成并成功运行后,FRANZ将成为内部和外部用户的用户设施。已经成功实现了120 kV注入器端子和200mA质子源以及低能束传输段和FRANZ洞穴。 1.9MV RF加速器由一个组合的4-Rod-RFQ / IH-DTL谐振器组成,处于RF调谐和功率测试阶段。准备安装2MeV运输和重新装订器部分。第一步,如上所述,FRANZ将提供用于中子活化实验和质子束实验的实验区域。从加速器的物理观点来看,FRANZ将是用于高电流束研究和束壁相互作用研究的极佳设备。

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