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Member

Name・Contact Research・Job
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Professor 
FUJISAWA Akihide
fujisawa@triam.kyushu-.ac.jp
TEL 092-583-7709
FAX 092-573-6899

・Magnetic confinement plasma for nuclear fusion
・Experimental research to explore the principles of plasma structure formation
・Transition phenomena in plasmas, such as what is called H-mode transition
・Precise observation of turbulence that determines the transition state

Associate Professor 
NAGASHIMA Yoshihiko
nagashima@triam.kyushu-u.ac.jp
TEL 092-583-7707
FAX 092-573-6899

・Waves, Oscillations, and Turbulence in Plasmas
・Precise measurement of fluctuations in plasma by setting up measurement equipment
・Ultra-precise analysis of data using statistics
・Elucidation of the depth of turbulence
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Assistant Professor 
NISHIZAWA Takashi
t.nishizawa@riam.kyushu-u.ac.jp
TEL 092-583-7724
FAX 092-583-7723
・Elucidating the physical laws governing plasmas with the goal of realising the energy of nuclear fusion
・Spectroscopy ・Using spectroscopic data with Bayesian statistics

Technician(Technical Service Division) 
NIIYA Ichiro
niiya@riam.kyushu-u.ac.jp
TEL 092-583-7930

Development of PLATO control system,Experiment operator

Technical Staff 
Funaki Mika
funaki@riam.kyushu-u.ac.jp
TEL 092-583-7721
FAX 092-583-7723

Work related to Grant-in-Aid for Specially Promoted Research

Administrative Staff 
HIEIDA Yoshiko
hieida@riam.kyushu-u.ac.jp
TEL 092-583-7721
FAX 092-583-7723

Office work of Fujisawa, Kasuya, Kosuge and Moon Lab

Administrative Staff 
Sugitani Hiroko
funaki@riam.kyushu-u.ac.jp
TEL 092-583-7721
FAX 092-583-7723

Office work of Fujisawa, Kasuya, Kosuge and Moon Lab


Students

Name Research
Ph.D. Course Students
KOBAYASHI Taiki
TAG index Proposal and application of a new conditional averaging method in magnetized plasmas
Ph.D. Course Students
NISHIMURA Daiki
TAG index Nonlinear Dynamics of Turbulent Oscillations in PANTA Plasmas
Master Course Students (M2)
NISHIMURA
Yuki
TAG index -
Master Course Students (M1)
HAYASHI
Riku
TAG index -
Master Course Students (M1)
BA
Chen Sheng

TAG index -


Graduates

Name Research
2022 graduates
GUO
Youming
Development of Deep Learning for Tomography Algorithm for PANTA Plasmas
MINAMI
Takafumi
Magnetic Field Dependance of Spatial structure of oscillation of PANTA Plasma
2021 graduates
KABASHIMA
Yuudai
Observation of the gas pressure dependence of PANTA plasma structure and fluctuations using tomography
SHINBARA
Shotaro
Magnetic field dependence of plasma structure and oscillations in PANTA studied using 3D tomography
2020 graduates
AKASHI
Tomohiro
On the application of arrival delay estimation to tomographic data in PANTA
2019 graduates
ARAKI
Ken
Development of a velocity field analysis method for PANTA plasmas using tomographic data
HOSHINO
Satoshi
Comparison of double probe data and tomographic data in PANTA
MARUI
Issei
Tomographic study of the magnetic field dependence of plasma oscillations and structure in PANTA
2018 graduates
KIN
Fumiyoshi
Measurement of turbulence structure using a probe
MATSUO
Mamoru
Tomography-Based Oscillatory Analysis in PANTA at High Power Discharge
UEHARA
Hikari
Development of Tomography Algorithm with Penalty Function
2017 graduates
TAWA
Koki
Analysis of emission fluctuation dynamics in linear plasmas using Fourier-Bessel function expansion and Stokes parameter
MOTOYOSHI
Takami
Spatio-temporal structure analysis of linear plasma turbulence by tomographic measurement
2016 graduates
ETOU
Kenta
Development of an Algorithm for Tomography by Least Squares Method with Penalty Function
2015 graduates
SHIBATA
Ryosuke
Development of SVD Algorithm for Turbulent Tomography
HAMAMOTO
Naoki
Spatio-temporal structure analysis using tomography and Fourier-Bessel function expansion in PANTA
Fukunaga
Fumiki
Analysis of nonlinear processes of drift wave instability in cylindrical magnetic field plasmas
2014 graduates
OHNO
Sho
Development of tomography algorithms in linear cylindrical plasmas
TAKAHASHI
Kousuke
Plasma oscillation and coherent mode structure analysis using tomography system in linear plasma system PANTA
TAKETSUGU
Katsuya
Tomography and turbulence analysis of linear plasmas using multi-channel, multi-wavelength distributed light