Origin of High Coercivity in Chemically Deposited Cobalt‐Phosphorus Films
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- Type
- article
- Published
- 1966-03-01
- Cited by
- 22
- References
- 3
- OpenAlex
- https://openalex.org/W1986796332
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:120127105
Keywords
Coercivity, Materials science, Condensed matter physics, Nuclear magnetic resonance, Analytical Chemistry (journal)
References
Cited by
- Life of Magnetic Electroless Co-P Thin Films
- A study on growth processes of CoNiP perpendicular magnetic anisotropy films electroless-deposited at room temperature
- Crystal growth of chemically reduced H.C.P. cobalt on F.C.C. single crystals
- The magnetic properties of CoP films with various preferred orientations
- Magnetic properties of magnetite films
- The effect of texturizing on the magnetic and recording properties of plated rigid disks
- High coercivity and high hysteresis loop squareness of sputtered Co‐Re thin film
- Magnetic properties and microstructure of electroless plated Co-Ni-P and Co-P thin films for longitudinal recording
- Electroless plating of Co-Zn-P thin film onto nanodiamond cores
- Domain structure and reversal processes in high-coercivity CoP films
- Electron microscopy of crystalline and amorphous Ni-P electrodeposited films: In-situ crystallization of an amorphous solid
- THIN FILMS FOR MAGNETIC RECORDING
- The effect of orientation, grain size and polymorphism on magnetic properties of sputtered Co-Re thin film media
- Noise dependence on the thickness of plated disks
- Sur l'anisotropie uniaxiale induite par trempe dans un champ magnétique des couches de Co-P déposées chimiques
- Magnetization reversal in cobalt-phosphorus films
- Quelques propriétés magnétiques des couches de CoP déposées chimiquement
- Thermomagnetic behavior of hard magnetic thin films
- Electrodeposited Co-P alloy and composite coatings: A review of progress towards replacement of conventional hard chromium deposits
- Atomic Layer Deposition of Perpendicularly Magnetized Co Layers Showing Current-Induced Domain Wall Motion
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