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Magnetic-field-induced enhancement of ion beam energy in a magnetically expanding plasma using permanent magnets

机译:磁场引起的使用永磁体的磁性膨胀等离子体中离子束能量的增强

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摘要

Ion energy distribution functions (IEDFs) near a source exit of a magnetically expanding argon plasma using only permanent magnets (PMs) are measured by a combination of a retarding field energy analyzer and a pulsed probe method for three types of magnetic-field configurations and various operating gas pressures, where the magnetic-field strength in the source tube is increased up to 270 G by adding the number of the PM layers. The 13.56 MHz rf power for plasma production is maintained at 250 W. The IEDFs show the existence of an accelerated group of ions. It is found that the energy of the accelerated ions increases when the magnetic-field strength is increased, but saturates at seven times the electron temperature at argon pressures of 0.6–1.6 mTorr. Our results show that the maximum velocity of the accelerated ions is found to be 14 km s_−1 with a Mach number of 3.8.
机译:仅通过使用永磁体(PMs)来测量磁性膨胀氩等离子体的源出口附近的离子能量分布函数(IEDF),方法是将延迟场能量分析仪和脉冲探针方法结合起来,用于三种类型的磁场配置和各种在工作气体压力下,通过增加PM层数,将源管中的磁场强度提高到270G。用于等离子体产生的13.56 MHz rf功率保持在250W。IEDF显示存在加速的离子组。发现当磁场强度增加时,加速离子的能量增加,但在氩气压力为0.6–1.6 mTorr的电子温度的七倍时饱和。我们的结果表明,加速离子的最大速度为14 km s_1,马赫数为3.8。

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