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ION EXTRACTION CHARACTERISTICS FROM PHOTOIONIZED PLASMA BY RADIO-FREQUENCY RESONANCE METHOD

机译:射频共振法从光离化等离子体中提取离子的特性

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In order to raise ion extraction efficiency in laser isotope separation, we have developed a radio-frequency (rf) resonance method. Then. to confirm feasibility of this method to a photoionized plasma, we experimentally studied the ion extraction characteristics. When the rf frequency was swept under a weak magnetic field (5 mT), the plasma-sheath resonance was found to occur at about 12 MHz which was almost the same value as the theoretical one. Moreover, it was confirmed that the ion extraction time at the resonance frequency became the minimum. When the magnetic field strength decreased from 5 mT to zero, the ion extraction time became long. From the simulation results, this was because the plasma potential decreased with the magnetic field strength. Therefore, a magnetic field strength of more than 1 mT was required to obtain a sufficient ion extraction efficiency. To obtain the same extraction time as when appling a -3 kV dc voltage in the electrostatic method, the rf resonance method needed a voltage more than 70 V-rms, in which the dc bias was -1 kV. Therefore, we confirmed that this method is feasible for the ion extraction from the photoionized plasma. [References: 16]
机译:为了提高激光同位素分离中的离子提取效率,我们开发了一种射频(rf)共振方法。然后。为了确认该方法对光电离等离子体的可行性,我们通过实验研究了离子提取特性。当在弱磁场(5 mT)下扫过rf频率时,发现在大约12 MHz处发生了等离子体鞘共振,这几乎与理论值相同。另外,可以确认在共振频率下的离子提取时间为最短。当磁场强度从5 mT降低到零时,离子提取时间变长。从模拟结果来看,这是因为等离子体电位随着磁场强度而降低。因此,需要大于1mT的磁场强度以获得足够的离子提取效率。为了获得与在静电方法中施加-3 kV dc电压相同的提取时间,射频共振方法需要大于70 V-rms的电压,其中dc偏置为-1 kV。因此,我们证实了该方法对于从光电离等离子体中提取离子是可行的。 [参考:16]

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