Abstract
The low pressure gas breakdown described by Paschen's law in Townsend theory, i.e. the breakdown voltage as a function of gas pressure p and the electrode distance d, provides an accurate description of breakdown in DC discharges when the ratio between inter-electrode gap distance d and electrode radii R tends to zero. On increasing of the ratio d/R, the Paschen's curves are shifted to the region of higher breakdown voltage and higher pd values. A modified Paschen's law recently proposed is well satisfied in our measurements. However, the value of constant b changes not only due to gas type but also according to electrode gap distance; furthermore, gas breakdown voltages are considerably modified by plasma-wall interactions due to glass tube proximity in the discharge.
Cite
CITATION STYLE
Ronchi, G., & Machida, M. (2014). On correction factor in scaling law for low pressure DC gas breakdown. In Journal of Physics: Conference Series (Vol. 511). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/511/1/012002
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