Electric field measurement in DC corona discharge in atmospheric pressure air using E-FISHG and laser-triggering methods

Shin Nakamura, Masataka Sogame, Masahiro Sato, Takashi Fujii and Akiko Kumada
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Abstract

Electric field measurement using electric-field-induced second-harmonic generation (E-FISHG) draws attention because of its non-invasiveness and is increasingly being applied to various discharge plasmas. However, measurement accuracy of previous studies is unclear since approximations in calibration are inadequate. Therefore, we have developed a measurement and analysis method that does not require approximations and can furthermore obtain the distribution of the electric field. To demonstrate the applicability of the proposed method to discharge plasmas, in this paper, we measure the electric field as a result of the space charge generated by DC corona discharge in atmospheric pressure air and validate the results by comparing them with those obtained using the laser-triggering method. We demonstrate that the electrostatic field and electric field resulting from the space charge can be measured with a difference of about 10% between the results obtained from the laser triggering method and E-FISHG method. The proposed method holds potential for applications in discharge plasmas.
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使用 E-FISHG 和激光触发方法测量常压空气中直流电晕放电的电场
利用电场诱导二次谐波发生(E-FISHG)测量电场因其非侵入性而备受关注,并越来越多地应用于各种放电等离子体。然而,由于校准中的近似值不足,以往研究的测量精度并不明确。因此,我们开发了一种测量和分析方法,它不需要近似值,还能进一步获得电场的分布。为了证明所提出的方法适用于放电等离子体,我们在本文中测量了大气压空气中直流电晕放电产生的空间电荷所产生的电场,并将结果与使用激光触发方法得到的结果进行了比较。我们证明,通过激光触发法和 E-FISHG 法测量的静电场和空间电荷产生的电场相差约 10%。所提出的方法具有在放电等离子体中应用的潜力。
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