Measurement of electron temperature and plasma density in coplanar ac plasma display panels
I.R. Cho, M.W. Moon, C. G. Ryu, Myoung Choul Choi, Eun Ha Choi
Abstract
I.R. Cho, M.W. Moon, C. G. Ryu, Myoung Choul Choi, Eun Ha Choi
Abstract
The electron temperature and plasma density in coplanar alternating-current plasma display panels (AC-PDPs) have been experimentally investigated by a micro Langmuir probe and the high speed discharge images in this experiment. It is noted in this experiment that the electron temperature obtained from both the micro Langmuir probe and high speed ICCD camera decreases from 2.5 eV to 1.2 eV as the filling Ne+Xe gas pressure increases from 150 Torr to 350 Torr. It is noted that these electron temperatures are in good agreement with each other within 5% error limit. The plasma density at the lateral distance of 125 /spl mu/m away from the center of sustaining electrode gap has been found to be saturated from 0.73/spl middot/10/sup 11/ cm/sup -3/ to 7.54/spl middot/10/sup 11/ cm/sup -3/ at the Ne+Xe filling pressures ranged from 150 Torr to 350 Torr.
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The electron temperature and plasma density in coplanar alternating-current plasma display panels (AC-PDPs) have been experimentally investigated by a micro Langmuir probe and the high speed discharge images in this experiment. It is noted in this experiment that the electron temperature obtained from both the micro Langmuir probe and high speed ICCD camera decreases from 2.5 eV to 1.2 eV as the filling Ne+Xe gas pressure increases from 150 Torr to 350 Torr. It is noted that these electron temperatures are in good agreement with each other within 5% error limit. The plasma density at the lateral distance of 125 /spl mu/m away from the center of sustaining electrode gap has been found to be saturated from 0.73/spl middot/10/sup 11/ cm/sup -3/ to 7.54/spl middot/10/sup 11/ cm/sup -3/ at the Ne+Xe filling pressures ranged from 150 Torr to 350 Torr.
Key concepts: Langmuir probe, Torr, Electron temperature, Plasma, Plasma diagnostics, Atomic physics, Electron density, Materials science