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Direct comparison of electric field measurement by fluorescence and optogalvanic Stark spectroscopies

机译:通过荧光和光电动斯塔克光谱法直接测量电场

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摘要

Electric field in the cathode fall region of a 2.2 Torr helium de discharge with 0.8 mA cm(-2) current density has been measured from the Stark splittings of 11 P-1 (unperturbed) Rydberg transition by simultaneous optogalvanic (OG) and fluorescence techniques. The LIF Stark spectra showed narrower linewidths compared to the OG spectra for higher parabolic quantum number states; LIF data also showed broader linewidths for higher parabolic quantum number states compared to the lines in the centre of the manifold. However, the electric fields obtained from the two methods were in agreement with each other within three per cent for all the measured locations in the sheath. A comparison of the OG spectrum with the off-axis LIF data shows a combination of signal gain in the high-field region along with the Stark intensity distribution permits the line-of-sight-averaged OG spectrum to obtain accurate field values in a discharge with modest radial field gradients. [References: 25]
机译:通过同时光电(OG)和荧光技术从11 P-1(无扰动)Rydberg跃迁的Stark分裂测量了2.2 Torr氦放电的阴极下降区域中的电场,电流密度为0.8 mA cm(-2) 。与更高的抛物线量子数态的OG光谱相比,LIF Stark光谱显示出更窄的线宽。与流形中心的线相比,LIF数据还显示出较高的抛物线量子数状态的线宽。然而,对于护套中的所有测量位置,通过两种方法获得的电场在3%之内彼此一致。 OG频谱与离轴LIF数据的比较表明,高场区域的信号增益与Stark强度分布相结合,使视线平均的OG频谱能够在放电中获得准确的场值具有适度的径向场梯度。 [参考:25]

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