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Space and time‐resolved measurements of plasma density by a lithium neutral beam probe in NBT‐1M

机译:在NBT-1M中使用锂中性束探针进行时空分辨的血浆密度测量

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A lithium neutral beam probe has been improved for space and time‐resolved measurements of plasma density in NBT‐1M. A lithium neutral beam (4 keV, 10–30 μA) is injected into the plasma and photon flux emitted from the injected lithium atoms by electron impact excitation is detected. This cross section is not sensitive to the electron temperature in a wide range (10 eV≪Te ≪200 eV) and the photon flux intensity is proportional to the electron density. Typical spatial and temporal resolutions are 1 cm and a few milliseconds, respectively. Beam attenuation is not severe for plasmas with n1≪1014 cm-2 unless the ion temperature is very high (Ti ≫1 keV), where the attenuation through charge‐exchange process becomes dominant. This method is not influenced by the magnetic field and can be applied to plasmas in any magnetic field configuration.
机译:改进了锂中性束探针,可用于NBT-1M中空间和时间分辨的血浆密度测量。将锂中性束(4 keV,10–30μA)注入等离子体,并检测通过电子撞击激发从注入的锂原子发出的光子通量。该截面对电子温度在很宽的范围内(10 eV≪Te ≪200 eV)不敏感,并且光子通量强度与电子密度成正比。典型的空间和时间分辨率分别为1厘米和几毫秒。除非离子温度很高(Ti ≫1 keV),否则通过电荷交换过程的衰减将占主导地位,对于n1≪1014 cm-2的等离子体,束衰减并不严重。该方法不受磁场的影响,可以应用于任何磁场配置的等离子体。

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