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Study of Luminous Emission from a Coaxial Plasma Discharge Device in the Presence of External Transverse Magnetic Field

机译:外部横向磁场作用下同轴等离子体放电装置的发光研究

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The experimental investigations in this paper are focused on the study of luminous radiation emission from coaxial plasma discharge device and the effect of applied transverse magnetic field Btr on it. The experiment was done in (1.5 KJ - 10 KV) coaxial plasma discharge device. The discharge is operated in Nitrogen gas at pressures from 1 to 2.2 torr. Helmholtz magnetic coils are placed outside the coaxial electrodes with its axis at a distance = 3 cm from the coaxial electrodes muzzle, then Btr with a maximum induction ≈ 0.85 T is applied perpendicularly to the expanded plasma from the coaxial electrodes muzzle. The diagnostics used in the measurements include a Rogowsky coil and a photomultiplier tube equipped with light collimator. The experimental results showed that the maximum intensity of luminous radiation is detected at axial distance (side view) z = 8 cm and gas pressure, P = 2.2 torr. It also showed that the maximum value of axial luminous plasma zone velocity = 2.383 × 106 cm/s at z = 11 cm and P = 1.4 torr. In mode of presence of external Btr, the investigations have shown that, at P = 1.4 torr the maximum intensity of luminous radiation (detected at end-view position) is reduced by 17%, the full width at half maximum, FWHM of luminous radiation signal is increased by 40 times, while the luminous radiation signal is delayed by ta = 438 μs. In two modes of operation ta and FWHM have approximately a minimum values at P = 1.4 torr.
机译:本文的实验研究集中在研究同轴等离子放电装置发出的光辐射以及施加的横向磁场Btr对它的影响。实验是在(1.5 KJ-10 KV)同轴等离子体放电装置中完成的。放电是在氮气中以1至2.2托的压力进行的。将亥姆霍兹电磁线圈放置在同轴电极的外部,其轴距同轴电极枪口的距离= 3 cm,然后将最大感应强度≈0.85 T的Btr垂直施加到来自同轴电极枪口的膨胀等离子体。测量中使用的诊断包括Rogowsky线圈和配备有光准直仪的光电倍增管。实验结果表明,在轴向距离(侧视图)z = 8 cm和气压P = 2.2托时,检测到最大的发光强度。它还表明,在z = 11 cm和P = 1.4 torr时,轴向发光等离子体区速度的最大值= 2.383×106 cm / s。在存在外部Btr的模式下,研究表明,在P = 1.4托时,最大的发光强度(在端视位置处检测到)降低了17%,即半峰全宽,发光的FWHM辐射信号增加40倍,而发光信号延迟ta = 438μs。在两种工作模式下,ta和FWHM在P = 1.4 torr时具有最小值。

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