Papers - KAWAGUCHI Hideki

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  1. Development of improved memory architecture FDTD/FIT dedicated computer based on SDRAM for large scale microwave simulation

    Y.Fujita and H.Kawaguchi,International Journal of Applied Electromagnetics,vol.Vol.32,(No.3),(p.145 ~ 157),2010

  2. Three-dimensional Wake Field Computations based on Scattered-field Time Domain Boundary Element Method

    K.Fujita, H.Kawaguchi, T.Weiland and S.Tomioka,IEEE Trans. Nuclear Science,vol.Vol.56,(No.4),(p.2341 ~ 2350),2009

  3. A New Method of Line Plasma Production by Microwave in a Narrowed Rectangular Waveguide

    Y.Kimura, H.Kawaguchi, S. Kagami, M. Furukawa, and H. Shindo,Appl. Phys. Express,vol.Vol.2,(p.126002 ~ ),2009

  4. Full Custom PCB Implementation of FDTD/FIT Dedicated Computer

    Y.Fujita and H.Kawaguchi,IEEE Trans. Magn.,vol.Vol.45,(No.3),(p.1100 ~ 1103),2009

  5. Improved Architecture of FDTD/FIT Dedicated Computer for Higher Performance Computation

    H.Kawaguchi, Y.Fujita, Y.Fujishima and S.Matsuoka,IEEE Trans. Magn.,vol.44,(6),(p.1226 ~ 1229),2008

  6. Time Domain Boundary Element Analysis of Wake Fields in Long Accelerator Structures

    K.Fujita, H.Kawaguchi, R.Hampel, W.F.O.M&#252,IEEE Trans. Nuclear Science,vol.Vol.55,(No.5),(p.2584 ~ 2591),2008

  7. TM01-mode microwave propagation property analysis for plasmas with disk-plate windows by a finite-difference time-domain method

    Y.Okamura, Y.Yamamoto, K.Fujita, T.Miyoshi, K.Teramoto, H.Kawaguchi, S.Kagami and M.Furukawa,Journal of Vacuum Science and Technology A,vol.Vol.25,(Issue 4),(p.816 ~ 823),2007

  8. Scattered-field Time Domain Boundary Element Method and Its Application to Transient Electromagnetic Field Simulation in Particle Accelerator Physics

    K.Fujita, H.Kawaguchi, S.Nishiyama, S.Tomioka, T.Enoto, I.Zagorodnov and T.Weiland,IEICE Trans. Electron,vol.Vol.E90-C,(No.2),(p.265 ~ 274),2007

  9. Time Domain Wake Field Computation with Boundary Element Method

    K. Fujita, H. Kawaguchi, I. Zagorodnov and T. Weiland,IEEE Trans. Nuclear Science,vol.53,(2),(p.431 ~ 439),2006

  10. 3次元マイクロ波シミュレータ・FDTDメモリマシンの開発に関する研究

    髙﨑秀樹,川口秀樹,松岡俊佑,高原健爾,日本AEM学会誌,vol.14,(2),(p.215 ~ 219),2006

  11. データフローアーキテクチャFDTD/FIT法専用計算機における吸収境界条件の検討

    松岡俊佑,藤田和広, 高田士寛,川口秀樹,計算数理工学論文集,vol.第5巻,(第2号),(p.171 ~ 176),2005

  12. 時間領域境界要素法による2.5次元電磁場シミュレーション

    藤田和広,川口秀樹,境界要素法論文集,vol.21,(p.19 ~ 22),2004

  13. 時間領域境界要素法による粒子加速器におけるピルボックス加速空洞の数値解析

    川口秀樹,藤田和広,Transactions of the JASCOME Journal of Boundary Element Methods,vol.第20巻,(p.57 ~ 60),2003

  14. Time Domain Analysis of Electromagnetic Wave Fields by Boundary Integral Equation Method

    H.Kawaguchi,Engineering Analysis with Boundary Elements,vol.Vol.27,(4),(p.291 ~ 304),2003

  15. Study of a Microwave Simulation Dedicated Computer, FDTD/FIT Data Flow Machine

    S.Matsuoka and H.Kawaguchi,IEICE Trans. Electron.,vol.Vol.E86-C,(No.11),(p.2199 ~ 2206),2003

  16. 3次元マイクロ波シミュレータエンジンの基本設計に関する研究

    川口秀樹、廣瀬公輝、堀田誠人、松岡俊佑、高原健爾,電気学会論文誌A (T. IEE Japan),vol.122,(12),(p.1038 ~ 1044),2002

  17. Stable time domain boundary integral equation method for axisymetric coupled charge-electromagnetic field problems

    H.Kawaguchi,IEEE Trans. Magn.,vol.38,(2),(p.749 ~ 752),2002

  18. Design Study of Ultra-high Speed Microwave Simulator Engine

    H.Kawaguchi, K.Takahara, D.Yamauchi,IEEE Trans. Magn.,vol.38,(2),(p.689 ~ 692),2002

  19. Minkowski Norm Preserving Integrator for Ultra-Relativistic Radiating Charged Particles

    H.Kawaguchi,AIP Conference Proceedings,vol.627,(p.244 ~ 252),2002

  20. Evaluation of the Lorentz Group Lie Algebra Map Using the Baker-Cambel-Hausdorff Formula

    H.Kawaguchi,IEEE Trans. Magn.,vol.35,(3),(p.1490 ~ 1493),1999

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