Application of Ion-Beam-Sputtered Al Films to Ultrathin Surface Acoustic Wave Devices
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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
- 1993-05-30
著者
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Kamijo A
Nec Corp. Kanagawa Jpn
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Kamijo Atsushi
Fundamental Research Laboratories Nec Corporation
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YAMAMOTO Yasushi
Second Transmission Division, NEC Corporation
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MITSUZUKA Tsutomu
Fundamental Research Laboratories, NEC Corporation
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TOMOTSUNE Kaoru
Transmission Engineering Division, NEC Corporation
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TAMICHI Shigeru
Transmission Engineering Division, NEC Corporation
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Tomotsune Kaoru
Transmission Engineering Division Nec Corporation
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Tamichi Shigeru
Transmission Engineering Division Nec Corporation
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Mitsuzuka Tsutomu
Fundamental Research Laboratories Nec Corporation
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Kamijo Atsushi
Fundamental Research Laboratories Nec Corp.
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Yamamoto Yasushi
Second Transmission Division Nec Corporation
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Kamijo Atsushi
Fundamental and Environmental Research Laboratories, NEC Corporation, 34, Miyukigaoka, Tsukuba, Ibaraki 305-8501, Japan
関連論文
- First Evidence of Interfacial Magnetic Roughness in Fe/Cr Artificial Multilayer Studied by Neutron Diffraction Measurement
- High Frequency Surface Acoustic Wave Filter Using ZnO/Diamond/Si Structure
- Application of Ion-Beam-Sputtered Al Films to Ultrathin Surface Acoustic Wave Devices
- Effect of Ultra-Clean Sputtering on Magnetoresistance and Thermal Stability of Magnetoresistance in Spin-Valves
- Optical Design that Increases Light-Extraction Efficiencies of Organic Light-Emitting Devices through Finite-Difference-Time-Domain Method
- Power Durability of Highly Textured Al Electrode in Surface Acoustic Wave Devices
- Highly Preferred [111] Texture in Al Films Deposited on Ultrathin Metal Underlayers
- Large Saturation Field in Magnetoresistance for Epitaxial Co/Cu(111) Superlatlices
- Growth of and giant magnetoresistance effect in epitaxial Fe/Cr superlattices(Abstracts of Doctoral Dissertations,Annual Report (from April 1997 to March 1998))
- Optical Design that Increases Light-Extraction Efficiencies of Organic Light-Emitting Devices through Finite-Difference-Time-Domain Method