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Journal Articles

Nuclear resonant scattering of synchrotron radiation by Yb nuclides

Masuda, Ryo*; Higashitaniguchi, Satoshi*; Kitao, Shinji*; Kobayashi, Yasuhiro*; Seto, Makoto*; Mitsui, Takaya; Yoda, Yoshitaka*; Haruki, Rie*; Kishimoto, Shunji*

Journal of the Physical Society of Japan, 75(9), p.094716_1 - 094716_4, 2006/09

 Times Cited Count:2 Percentile:19.49(Physics, Multidisciplinary)

no abstracts in English

Journal Articles

Site-specific phonon density of states discerned using electronic states

Seto, Makoto; Kitao, Shinji*; Kobayashi, Yasuhiro*; Haruki, Rie*; Yoda, Yoshitaka*; Mitsui, Takaya; Ishikawa, Tatsuo*

Physical Review Letters, 91(18), p.185505_1 - 185505_4, 2003/10

 Times Cited Count:31 Percentile:78.09(Physics, Multidisciplinary)

no abstracts in English

Journal Articles

Nuclear resonance scattering of synchrotron radiation by $$^{40}$$K

Seto, Makoto; Kitao, Shinji*; Kobayashi, Yasuhiro*; Haruki, Rie*; Mitsui, Takaya; Yoda, Yoshitaka*; Zhang, X. W.*; Maeda, Yutaka*

Physical Review Letters, 84(3), p.566 - 569, 2000/07

 Times Cited Count:22 Percentile:72.72(Physics, Multidisciplinary)

no abstracts in English

Oral presentation

Dependence of incoherent nuclear resonant scattering of synchrotron radiation on the number of resonant nuclei

Masuda, Ryo; Kitao, Shinji*; Kobayashi, Yasuhiro*; Seto, Makoto*; Zhang, X.*; Kishimoto, Shunji*; Haruki, Rie*

no journal, , 

no abstracts in English

Oral presentation

Oral presentation

Simulation of LH transition in BOUT++ framework

Seto, Haruki; Breyiannis, G.*; Yagi, Masatoshi; Dudson, B.*; Xu, X.*

no journal, , 

In this study, we have developed a framework of the first principal simulation of the LH transition by 3field($$U$$, $$P$$, $$psi$$)-RMHD model in BOUT++ framework from those by 2field($$U$$, $$P$$)-RMHD model reported by several research groups recently, where $$U$$ is the vorticity, $$P$$ is the pressure and $$psi$$ is the parallel vector potential. In these LH transition simulation framework, LH transition is described by the resistive ballooning mode (RBM) turbulence, the pressure profile determined by the dynamic balance of the energy transport and the poloidal damping effect (PDE) describing the radial force balance of the ion species including the poloidal rotation effect. In this presentation, we investigated the impact of the PDE on the RBM turbulence by nonlinear simulations with 3field-RMHD model and found that the PDE suppresses the RBM turbulence as a preliminary step for a first principal simulation of LH transition with 3field RMHD model.

Oral presentation

Development of L-H Transition Simulation Framework with BOUT++ code

Seto, Haruki; Yagi, Masatoshi

no journal, , 

no abstracts in English

Oral presentation

Simulation study on transport barrier formation in Tokamak plasmas

Yagi, Masatoshi; Seto, Haruki; Cho, Y. W.*; Hahm, T. S*; Xu, X.*; Dudson, B. D.*

no journal, , 

no abstracts in English

Oral presentation

Flux-driven turbulence simulation of L-H transition with BOUT++ code

Seto, Haruki; Yagi, Masatoshi; Xu, X.*

no journal, , 

no abstracts in English

Oral presentation

Simulation study on transport barrier in tokamak plasmas

Yagi, Masatoshi; Seto, Haruki; Cho, Y. W.*; Hahm, T. S*

no journal, , 

no abstracts in English

Oral presentation

Simulation study on transport barrier in tokamak plasmas

Yagi, Masatoshi; Seto, Haruki; Cho, Y. W.*; Hahm, T. S*

no journal, , 

no abstracts in English

Oral presentation

Flux-driven turbulence simulation of L-H transition

Seto, Haruki; Yagi, Masatoshi

no journal, , 

no abstracts in English

Oral presentation

Simulation study on L/H transition by flux-driven RMHD model

Seto, Haruki

no journal, , 

no abstracts in English

Oral presentation

Simulation study on L/H transition by source-driven turbulence model

Seto, Haruki; Yagi, Masatoshi; Xu, X.*

no journal, , 

no abstracts in English

Oral presentation

Simulation study on L/H transition by source-driven turbulence model

Seto, Haruki

no journal, , 

no abstracts in English

15 (Records 1-15 displayed on this page)
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