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Neutron yields based on transport calculation in EAST ICRF minority heating plasmas

机译:基于输运计算的EAST ICRF少数加热等离子体的中子产率

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Neutron diagnostics, including flux and energy spectrum measurements, have been applied on the experimental advanced superconducting tokamak (EAST). The absolute calibration of neutron yields has been achieved by a calculation method using the Monte Carlo automatic modeling (MCAM) system and the Monte Carlo N-Particles (MCNP) code. Since the neutron yield is closely related with the ion density and temperature, it is a good measure of plasma performance, especially the wave heating effect. In ion cyclotron range of frequencies (ICRF) experiments, the increase in the ion temperature derived by the neutron yield indicates an effective plasma heating. Minority protons damp a large fraction of the total wave power, and then transfer part of the energy to deuterium by collisions. Neutron spectrum measurements also indicate that no tail is created by high energy deuterons during ICRF heating. However, the ion temperature derived by the neutron yield is consistent with the result by using a poloidal X-ray imaging crystal spectrometer (PXCS), showing a reliable transport calculation.
机译:中子诊断(包括通量和能谱测量)已应用于实验性先进超导托卡马克(EAST)。通过使用蒙特卡洛自动建模(MCAM)系统和蒙特卡洛N粒子(MCNP)代码的计算方法,可以实现对中子产率的绝对校准。由于中子产率与离子密度和温度密切相关,因此它是衡量等离子体性能(尤其是波加热效果)的良好方法。在离子回旋加速器频率范围(ICRF)实验中,由中子产率导出的离子温度升高表明有效的等离子体加热。少数质子会衰减总波能的很大一部分,然后通过碰撞将一部分能量转移到氘上。中子光谱测量还表明,在ICRF加热期间,高能氘核不会产生尾巴。但是,由中子产率推导出的离子温度与使用极谱X射线成像晶体光谱仪(PXCS)的结果一致,显示出可靠的传输计算。

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