Crystal Direction of CdS Thin Film Produced by Laser Ablation
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概要
- 論文の詳細を見る
- 社団法人応用物理学会の論文
- 1998-07-15
著者
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Sumomogi Tsunetaka
Hiroshima-denki Institute Of Technology
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Ullrich B
Department Of Physics University Of Tokyo
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Ullrich Bruno
Department Of Physics University Of Tokyo
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SAKAI Hisashi
Hiroshima-Denki Institute of Technology
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TAMARU Takeyoshi
Hiroshima-Denki Institute of Technology
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EZUMI Hiromichi
Department of Fundamental Education, Shimane College of Nursing
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Ezumi Hiromichi
Department Of Electrical Engineering Hiroshima Denki Institute Of Technology:department Of Fundament
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Ezumi Hiromichi
Department Of Fundamental Education Shimane College Of Nursing
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Tamaru T
Hiroshima-denki Institute Of Technology
関連論文
- Possibility of Analyzing the Type of Impurities in Semiconductors by Application of Bistability in Luminescence
- Crystal Direction of CdS Thin Film Produced by Laser Ablation
- All-Optical Bistabilities in Reflection and Luminescence of Thin ZnSe Films
- Preparation of p-Type CdS Thin Film by Laser Ablation
- Stress-Induced Raman Frequency Shift in CuInSe_2 Thin Films Prepared by Laser Ablation
- Measurement of Plasma Flow of Mixture of Metal Vapor and Nitrogen in Shock Wave Deposition
- Conductivity Probe Studies in Radiating Xenon Plasma Flows Produced by Shock Waves
- A New Architecture for Optical Data Processing Devices by the Application of Bistability in Luminescence
- Ionization Relaxation Times in Shock-Heated Argron and Xenon
- Transmittance Bistability of CdS at 632.8 nm Induced by the 514.5 nm Line
- Residual Compression in Ni Film Prepared by Laser Ablation
- Bleaching and Spectral Shape Modificatiom of CdS Photocurrent due to He -Ne Laser Pumping
- Influence of Pulse Width on CdS Film Prepared by YAG Laser Ablation
- All-Optical Absorptive and Dispersive Bistabilities in Luminescence of a Thin CdS Film
- Comparison of Bistable Light Emission of a Thin CdS:Cu Film Measured in Reflection and Transmission Geometry
- Deformation Characteristics of Fine Protrusions Formed by Sputter-Etching of Stainless Steels