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Measurements of electrical conductivity and the mean ionization state of nonideal aluminum plasmas

机译:非理想铝等离子体的电导率和平均电离态的测量

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Thin pure aluminum wires which are rapidly vaporized in small glass capillaries by means of a short pulse current from an electrical discharge convert into a nonideal plasma near solid density. For a short period of time, the inner wall of the rigid glass capillary confines the homogeneous plasma until the induced pressure pulse disintegrates the capillary. During this part of the discharge, no instabilities occur, and the transient plasma covers a range of parameters according to the charge of the capacitors: the particle density ranges from 0.001 to 1.0 g/cm(3), the temperature from 7000 to 24 000 K and the electron density from 2.0 X 10(25) to 3.0 x 10(26) m(-3). Plasma conductivity was deduced by simply applying Ohm's law to the measured voltage drop across the wire and to the measured current through the wire. [S1063-651X(98)14411-2]. [References: 37]
机译:细的纯铝线通过放电产生的短脉冲电流在小型玻璃毛细管中迅速蒸发,转化为接近固体密度的非理想等离子体。在短时间内,硬质玻璃毛细管的内壁限制了均匀的等离子体,直到感应的压力脉冲使毛细管崩解为止。在这部分放电过程中,不会发生不稳定,瞬态等离子体会根据电容器的电荷覆盖一系列参数:颗粒密度范围为0.001至1.0 g / cm(3),温度范围为7000至24000 K和电子密度从2.0 X 10(25)到3.0 x 10(26)m(-3)。只需将欧姆定律应用于导线上测得的电压降和导线上测得的电流,即可推导出等离子体电导率。 [S1063-651X(98)14411-2]。 [参考:37]

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