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Low-field magnetic-properties of ErCo
2
intermetallic compound
Y. Oner
*
,
E. Alveroglu
, O. Kamer
*
Corresponding author for this work
Department of Physics Engineering
Istanbul Technical University
Research output
:
Contribution to journal
›
Article
›
peer-review
10
Citations (Scopus)
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2
intermetallic compound'. Together they form a unique fingerprint.
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Keyphrases
Magnetic Properties
100%
Cobalt
100%
Intermetallic Compounds
100%
Low Field
100%
Magnetization
75%
Field Cooling
75%
Zero-field Cooling
75%
Room Temperature
50%
Annealing
50%
Magnetic Hysteresis
50%
Erbium
50%
Magnetic Moment
50%
Magnetization Measurements
50%
Equilibrium State
25%
Temperature Effect
25%
Temperature Range
25%
Thermal Treatment
25%
Possible Mechanisms
25%
Thermal History
25%
Curie Temperature
25%
Transition Temperature
25%
Resistivity
25%
Magnetic Behavior
25%
Formation Process
25%
Reduction Rate
25%
Thermal Cycling
25%
High Coercivity
25%
Thermomagnetic
25%
AC Susceptibility
25%
H-cycle
25%
Earth's Field
25%
Dzyaloshinskii-Moriya
25%
Lattice Expansion
25%
Hysteresis Effect
25%
Small Distortion
25%
First-order Magnetic Transition
25%
Magnetic Hysteresis Loop
25%
Range Extending
25%
Cobalt Atom
25%
First Cycle
25%
Anisotropic Interactions
25%
Easy Axis
25%
Orbital Moment
25%
Q-curves
25%
Chemistry
Intermetallic Compound
100%
Cobalt
100%
Magnetic Property
100%
Magnetic Hysteresis
75%
Ambient Reaction Temperature
50%
Erbium
50%
Magnetic Moment
50%
Melting Point
25%
Drop
25%
Relaxation
25%
Cobalt Atom
25%
Magnetic Transition
25%
Curie Temperature
25%
Thermal Cycling
25%
Coercivity
25%
Critical Temperature
25%
formation
25%
Heat Treatment
25%
Material Science
Cobalt
100%
Intermetallics
100%
Erbium
40%
Electrical Resistivity
20%
Curie Temperature
20%
Thermal Cycling
20%