Development of dispersion interferometer for magnetic confinement plasmas and high-pressure plasmas

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Abstract

A CO2 laser dispersion interferometer (DI) has been developed for both magnetically fusion plasmas and high pressure industrial plasmas. The DI measures the phase shift caused by dispersion in a medium. Therefore, it is insensitive to the mechanical vibrations and changes in the neutral gas density, which degrade the resolution of the electron density measurement. We installed the DI on the Large Helical Device (LHD) and demonstrated a high density resolution of 2× 1017 m-3 without any vibration-free bench. The measured electron density with the DI shows good agreement with results of the existing far infrared laser (a wavelength of 119 μ m) interferometer. The DI system is also applied to the electron density measurement of high-pressure small-scale plasmas. The significant suppression of the phase shift caused by the neutral gas is proven. The achieved density resolution was 1.5× 1019 m-3 with a response time of 100 μ s. A shorter version of this contribution is due to be published in PoS at: 1st EPS conference on Plasma Diagnostics.

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Akiyama, T., Yasuhara, R., Kawahata, K., Nakayama, K., Okajima, S., Urabe, K., … Shirai, N. (2015). Development of dispersion interferometer for magnetic confinement plasmas and high-pressure plasmas. Journal of Instrumentation, 10(9). https://doi.org/10.1088/1748-0221/10/09/P09022

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