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Investigations on Thermomagnetic Properties of YbFe2As2
by
Alamri, Hatem R.
, Hamad, Mahmoud. A.
, Mohamed, Ashraf M.
, Hemeda, O. M.
in
Characterization and Evaluation of Materials
/ Condensed Matter Physics
/ Heat
/ Helium
/ Liquid helium
/ Low temperature physics
/ Magnetic fields
/ Magnetic Materials
/ Magnetism
/ Physics
/ Physics and Astronomy
/ Temperature
2021
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Investigations on Thermomagnetic Properties of YbFe2As2
by
Alamri, Hatem R.
, Hamad, Mahmoud. A.
, Mohamed, Ashraf M.
, Hemeda, O. M.
in
Characterization and Evaluation of Materials
/ Condensed Matter Physics
/ Heat
/ Helium
/ Liquid helium
/ Low temperature physics
/ Magnetic fields
/ Magnetic Materials
/ Magnetism
/ Physics
/ Physics and Astronomy
/ Temperature
2021
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Do you wish to request the book?
Investigations on Thermomagnetic Properties of YbFe2As2
by
Alamri, Hatem R.
, Hamad, Mahmoud. A.
, Mohamed, Ashraf M.
, Hemeda, O. M.
in
Characterization and Evaluation of Materials
/ Condensed Matter Physics
/ Heat
/ Helium
/ Liquid helium
/ Low temperature physics
/ Magnetic fields
/ Magnetic Materials
/ Magnetism
/ Physics
/ Physics and Astronomy
/ Temperature
2021
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Journal Article
Investigations on Thermomagnetic Properties of YbFe2As2
2021
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Overview
A phenomenological model (PM) is applied to simulate magnetocaloric effect (MCE) of YbFe
2
As
2
(YFA) sample. Based on PM, MCE parameters are deduced as the results of simulation for magnetization versus temperature under 5 T magnetic field. The maximum value of magnetic entropy change is 2.55 J/kg K. The values of full-width at half-maximum relative cooling power and refrigerant capacity are 34 K, 87 J/kg, and 62.6 J/kg, respectively. It is recommended that YFA can be used as an effective material of magnetic refrigerator over a temperature range, covering a significant range of temperature between 0 and 50 K. This indicates that YFA is considered as the MCE material functioning at a liquid helium temperature zone.
Publisher
Springer US,Springer Nature B.V
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