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Long-lived Ar-Hg plasma in the afterglow of a high-current pulsed discharge

机译:大电流脉冲放电余辉中的长寿命Ar-Hg等离子体

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High-density (n > 10~(12) cm~(-3)) argon-mercury plasma produced by a short (t ~ 20 μs) high-power pulsed discharge in argon with an admixture of mercury vapor at a discharge current of ~50 A, an argon pressure of ~4 mm Hg, and a mercury vapor pressure of ~10~(-3) mm Hg was studied using optical spectroscopy and radio physics methods. It is found that the lifetime of this plasma after the end of the discharge pulse is up to 10~(-2) s. It is shown that such an abnormally long lifetime of such an afterglow plasma, as compared to the plasma of an argon discharge without an admixture of mercury vapor, is related to the long residence time of atoms and ions of both argon and mercury in highly excited states due to chemi-ionization processes involving long-lived metastable argon ions. It is suggested that dissociative recombination of highly excited molecular ions of argon play an important role in the transfer of excitation to argon atoms and ions that are close to autoionization states.
机译:在氩气中短时间(t〜20μs)的高功率脉冲放电与汞蒸气的混合气体产生的高密度(n> 10〜(12)cm〜(-3))氩汞等离子体使用光学光谱法和无线电物理学方法研究了〜50 A,氩气压力〜4 mm Hg和汞蒸气压力〜10〜(-3)mm Hg。发现放电脉冲结束后该等离子体的寿命可达10〜(-2)s。结果表明,与没有汞蒸气混合的氩气放电等离子体相比,这种余辉等离子体的异常长寿命与氩和汞原子和离子在高激发态下的长停留时间有关。由于涉及长寿命的亚稳态氩离子的化学电离过程而产生的态。有人认为,高激发态氩分子离子的离解重组在激发向氩原子和接近自电离态的离子的转移中起着重要作用。

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