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Updated: Jan 9, 2026

Building Langmuir Probes and Emissive Probes for Plasma Potential Measurements in Low Pressure, Low Temperature Plasmas
Published on: May 25, 2021
Investigation of ion acoustic double layers in magnetized plasma with two nonextensive electron species
1Physics Department, K. N. Toosi University of Technology, Tehran, 15418-49611, Iran. m_hatami@kntu.ac.ir.
Abstract:
The dynamics of ion-acoustic double layers in a magnetized plasma composed of cold ions and two populations of q-nonextensive electrons are investigated using the Sagdeev pseudopotential approach. The analysis identifies how key plasma parameters-including the Mach number, magnetic field obliquity, electron nonextensivity, and the temperature ratio between hot and cool electrons-govern the existence and polarity of nonlinear electrostatic structures. The present study focuses on the physically relevant domain of auroral-type plasmas, characterized by [Formula: see text], [Formula: see text], [Formula: see text], and [Formula: see text] where spacecraft observations suggest coexisting hot and cool non-Maxwellian electrons [Berthomier, M., Pottelette, R. and Malingre, M. J. Geophys. Res. 104, 4261 (1998)]. Within this parameter range, unlike unmagnetized plasmas with two nonextensive electron species, the model supports only positive-potential double layers. Rather than claiming full coverage of the high-dimensional parameter space, the present work provides a detailed and physically motivated sampling to illustrate how variations in plasma parameters such as [Formula: see text], [Formula: see text], [Formula: see text], and [Formula: see text] modify the Sagdeev potential landscape. These results thus offer a constrained but realistic theoretical basis for understanding nonlinear ion-acoustic structures in magnetized space plasmas.
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