| Y. Nakajima, A. Kojima, and N. Koshida: "Generation of ballistic electrons in nanocrystalline porous silicon layers and its application to a solid-state planar luminescent device", Appl. Phys. Letters 81,2472-2474(2002). |
| T. Komoda, Y. Honda, T. Ichihara, T. Hatai,
Y. Takegawa, Y. Watabe, and K. Aizawa: "Development of a Low Temperature Process of Ballistic Electron Surface-Emitting Display (BSD) on a Glass Substrate", Society for Information Display 2002 Int. Symp. Digest of Technical Papers, 33, No.2, (SID, San Jose, 2002) 1128-1131 |
| N. Koshida: "Multifunctional properties of nanocrystalline porous silicon as a quantum-confined material (Invited)", Mater. Sci. & Eng. C724, 285-289 (2002). |
| T. Ichihara, Y. Honda, K. Aizawa T. Komoda
and N. Koshida: "Development of ballistic electron cold cathode by a low temperature processing of polycrystalline silicon films", J. Crystal Growth Special Issue in press (2002) (in press). |
| Y. Nakajima, A. Kojima, and N. Koshida: "A solid-state light-emitting device based on excitation of ballistic electrons generated in nanocrystalline porous poly-silicon films", Jpn. J. Appl. Phys. 41 (2002) 2707-2709. |
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X. Sheng, A. Kojima, T. Komoda, and N. Koshida: "Efficient and ballistic cold electron emission from porous polycrystalline silicon diodes with a porosity multilayer structure", JOURNAL OF VACUUM SCIENCE AND TECHNOLOGY B MICROELECTRONICS AND NANOMETER STRUCTURE 19; PART 1 (2001) 64-67 . |
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A. Kojima and N. Koshida: "Evidence of enlarged drift length in nanocrystalline porous silicon layers by time-of-flight measurements", Jpn. J. Appl. Phys. 40 (2001) 366-368 . |
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Y. Nakajima, A. Kojima, and N. Koshida: "A Novel Solid-State Light-Emitting Device Based on Ballistic Electron Excitation", Mat. Res. Soc. Proc. 638 (2001) in press. |
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A. Kojima, X. Sheng, and N. Koshida: "Analyses of Ballistic Electron Transport in Nanocrystalline Porous Silicon", Mat. Res. Soc. Proc. 638 (2001) in press. |
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T. Komoda, T. Ichihara, Y. Honda, K. Aizawa, and N. Koshida: "Ballistic Electron Surface-Emitting Cold Cathode by Porous Polycrystalline Silicon Film Formed on Glass Substrare", Mat. Res. Soc. Proc. 638 (2001) in press. |
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T. Komoda, Y. Honda, T. Hatai, Y. Watabe, T. Ichihara, K.Aizawa, and N. Koshida: "Fabrication of Ballistic Electron Surface-Emitting Display on Glass Substrates (Invited)", Society of Information Display, Digest of Technical Papers 32 (2001) 14-1. |
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T. Komoda, Y. Honda, T. Hatai, Y. Watabe, T. Ichihara, K. Aizawa, Y. Kondo and N. Koshida : "Matrix flat-panel application of ballistic electron surface-emitting display", Society for Information Display, Digest of Technical Papers 31 (2000) 428-431. |
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N. Koshida , X. Sheng and T. Komoda: "Quasiballistic Electron Emission from Porous Silicon Diodes", Appl. Surf. Sci. 146 (1999) 371-376. |
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T. Komoda , X. Sheng , N. Koshida: "Mechanism of efficient and stable surface-emitting cold cathode based on porous polycrystalline silicon films.", J. Vac. Sci. Technol. B 17(3) (1999) 1076-1079. |
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N. Koshida , B. Gelloz , X. Sheng , K. Ueno and A. Kojima: "Luminescence and Related Novel Functions of Quantum-sized Nanosilicon. (in Japanese)", Technical Report of IEICE LQE99-16 (1999) 1-6. |
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X. Sheng , H. Koyama and N. Koshida: "Efficient surface-emitting cold cathodes based on electroluminescent porous silicon diodes.", J. Vac. Sci. & Technol. B 16 (1998) 793-795. |
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X. Sheng and N. Koshida: "Quasi-ballistic Stable Electron Emission from Porous Silicon Cold Cathodes", Mat. Res. Soc. Symp. Proc. 509 (1998) p.p. 193-198. |
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X. Sheng , T. Ozaki , H. Koyama and N. Koshida: "Improved cold electron emission characteristics of electroluminescent porous silicon diodes.", J. Vac. Sci. & Technol. B 15 (1997) 1661-1665. |
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X. Sheng , H. Koyama and N. Koshida: "Emission characteristics of porous silicon cold cathodes.", Thin Solid Films 297 (1997) 314-316. |
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N. Koshida , T. Ozaki and H. Koyama: "Cold electron emission from electroluminescent porous silicon diodes.", Jpn. J. Appl. Phys. 34 (1995) L705-L707. |
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X. Sheng , T. Ozaki , H. Koyama and N. Koshida: "Properties of porous silicon LED as a surface-emitting cold cathode.", Proc. Int. Symp. on Advanced Luminescent Materials, Chicago (1995) p.p. 87-93. |