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平成12年度事業開始
福井県 「光ビームによる機能性材料加工創成技術開発」
  250-265
高輝度光ビーム加工技術に関する研究
レ−ザアブレーション機構と最適加工条件の解明
高感度・高速アブレーション分光計測技術の開発
香川 喜一郎


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2) H. Kurniawan, M. Ueda and K. Kagawa: Detection of the density jump in the laser-induced shock wave plasma using low energy Nd:YAG laser at low pressures of air, 分光研究, Vol. 50, pp. 13-18 (2001).
3) N. Idris, T. Kobayashi, H. Kurniawan, K. Kagawa and Y. I. Lee: Confinement effect in TEA CO2 laser-induced plasma on solid organic samples, J. Korean Physical Society, vol. 47, pp. 256-262 (2005).
4) H. Suyanto, H. Kurniawan, M. O. Tjia and K. Kagawa: Hole-modulated plasma for suppressing background emission in laser-induced shock wave plasma spectroscopy, Jpn. J. Apl. Phys., Vol. 42, pp. 5117-5122 (2003).
5) H. Hattori, H. Yamanaka, H. Kurniawan and K. Kagawa: Using minimum deviation of a secondary rainbow and its application to water analysis in a high-precision refractive-index comparator for liquids, Applied Optics, Vol. 36, pp. 5552-5556 (1997).
6) S. N. Madjid, H. Kurniawan, I. Kitajima and K. Kagawa: Shock wave and emission with sheet-like structure induced by YAG laser ablation at reduced pressure, Jpn. J. Appl. Phys., Vol. 41, pp. 3747-3751 (2001).
7) S. N. Madjid, I. Kitajima, H. Kurniawan and K. Kagawa: TEA-CO2 laser-induced shock wave plasma modulated by wires and needles placed in front of the target at low pressure, Applied Spectroscopy, Vol. 42, pp. 874-877 (2003).
8) J. M. Green, W. T. Silvast and O. R. Wood: Evolution of a CO2 laser-produced cadmium plasma, J. Appl. Phys., Vol. 48, pp. 2753-2761 (1977).
9) S. N. Madjid, I. Kitajima, T. Kobayashi and K. Kagawa: Characteristics of induced current due to laser plasma and its application to laser processing monitoring, Jpn. J. Appl. Phys., Vol. 43, pp. 1018-1027 (2004).
10) S. N. Madjid, I. Kitajima, T. Kobayashi and K. Kagawa: Low-cost monitoring system for laser processing, Jpn. J. Apl. Phys., Vol. 41, pp. 6411-6412 (2002).
11) 冨田誠一、田中隆三、岩井善郎: 透明導電薄膜の短パルスレーザアブレーション選択除去装置の開発, 福井県地域結集型共同研究事業研究成果集、pp. 9-10 (2005).