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Details

Autor(en) / Beteiligte
Titel
Particle-in-Cell Simulation of Phase-Shift and Faraday Rotation in Interferometry-Polarimetry Diagnostic Device of ITER Fusion Plasma
Ist Teil von
  • IEEE transactions on plasma science, 2021-06, Vol.49 (6), p.1871-1876
Ort / Verlag
New York: IEEE
Erscheinungsjahr
2021
Quelle
IEEE Xplore
Beschreibungen/Notizen
  • Kinetic particle-in-cell (PIC) method is a reliable technique for the laser-plasma interactions simulation based on particles' statistical behavior. This method can be applied in simulating physical phenomena involved in optical diagnostics tools, such as the interferometry-polarimetry (IP) system. IP is one of the significant laser diagnostic methods suggested in the large tokamaks, such as international thermonuclear experimental reactor (ITER), as to improve the accuracy of density and magnetic field measurements. In this article, two separate simulations of the poloidal IP system are run by applying a 2-D/3-V XOOPIC code to observe the phase-shift and Faraday effect in a magnetized plasma with input density and poloidal magnetic field of <inline-formula> <tex-math notation="LaTeX">{n}_{e} =3.00\times 10^{19}\,\,\mathrm {m}^{-3} </tex-math></inline-formula> and <inline-formula> <tex-math notation="LaTeX">{B}_{p}=1.00 </tex-math></inline-formula> T, respectively. For this purpose, a gaseous <inline-formula> <tex-math notation="LaTeX">\mathrm {(CO}_{2}) </tex-math></inline-formula> linear-polarized far-infrared laser beam of <inline-formula> <tex-math notation="LaTeX">\boldsymbol {\lambda }_{i}=118\,\,\mu \text{m} </tex-math></inline-formula> wavelength, and about <inline-formula> <tex-math notation="LaTeX">{30}~{\text {W}}/ {\text {m}}^{2} </tex-math></inline-formula> intensity is passed through the plasma, parallel to the magnetic field. The density and poloidal magnetic field are computed from laser phase-shift and Faraday rotation theories, at <inline-formula> <tex-math notation="LaTeX">{n}_{e,\text {com}}=2.99\times {10}^{19}\,\,\text {m}^{-3} </tex-math></inline-formula> and <inline-formula> <tex-math notation="LaTeX">{B}_{p,\text {com}}=0.99 </tex-math></inline-formula> T, which correspond to the input values of these simulations. The obtained results indicate the competence and potency of the PIC method in simulating role-playing phenomena in ITER diagnostic devices like the IP system.

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