Exchange Effects in the Optical Detection ESR and Dynamics of the Optical Pumping Cycle of F-Centers in KCl
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概要
- 論文の詳細を見る
- 社団法人日本物理学会の論文
- 1975-06-15
著者
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Kanzaki Hiroshi
Institute For Solid State Physics University Of Tokyo
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MORIGAKI Kazuo
Institute for Solid State Physics, University of Tokyo
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Morigaki Kazuo
Institute For Solid State Physics University Of Tokyo
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MURAYAMA Kazuro
Institute for Solid State Physics, University of Tokyo
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Kanzaki Hiroshi
Institute For Solid State Physics The University Of Tokyo
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Murayama Kazuro
Institute For Solid State Physics University Of Tokyo:(present Address) Department Of Physics Facult
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Kanzaki Hiroshi
Institute For Solid Slate Physics University Of Tokyo
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Morigaki Kazuo
Institute For Solid Stale Physics University Of Tokyo
関連論文
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- Observation of Light-Induced Phenomena by Photoluminescence and Optically Detected Magnetic Resonance in a-Si:H
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- Defect Creation by Optical Excitation in Hydrogenated Amorphous Silicon as Elucidated by Optically Detected Magnetic Resonance
- Photoacoustic Detection of Paramagnetic Resonance in Solids
- Time-Resolved Optically Detected Magnetic Resonance Experiment on Quenching Signals in a-Si:H
- Time-Resolved Optically Detected Magnetic Resonance Experiment on Conduction Band Tail Electrons and A Centres in Hydrogenated Amorphous Silicon
- Metal-Nonmetal Transition in Amorphous Si-Au System at Low Temperatures: Measurements of Electrical Conductivity and Thermoelectric Power
- Conductivity Change Due to Electron Spin Resonance in Amorphous Si-Au System
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- Low Temperature Photoconductivity of F Center in KCl
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- The Frozen-in Defects and Origin of Magnetic Centres in Phosphorus-Doped a-Si:H
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- The Role of Self-Trapped Holes in the Photoercation of Dangling Bonds in a-Si:H
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- New Evidence for Defect Creation by High Optical Excitation in Glow Discharge Amorphous Silicon
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- Electron Spin Resonance Studies of Shallow Donors in CdS
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- Donor States in Highly Compensated Silicon, as Elucidated by Electron Spin Resonance Experiment
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- On the Plastic Deformation of Copper Single Crystals. Part 2. Recovery Process and Mean Length of Dislocations.
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