AbstractAdiabatic temperature change, resulting from MCE, is a complex effect depending on in-field behavior of both lattice and magnetic subsystem of the sample. For studying MCE, the understanding of their interplay is crucial. Comparing ΔTad in different fields (e.g. below, above and far above saturation field) it should be possible to derive contributions from lattice and magnetic subsystems. In this present work we present our study of the MCE in Ni50Mn35In15 Heusler alloy in the vicinity of the magnetostructural transition in 1.6 T and 14 T field
We present the results of the studies of magnetic and magnetocaloric (MCE) properties of quaternary ...
Magnetocaloric effects (MCE) in the Ni50Mn35In15, Ni50.2Mn34.85In14.95, and Ni50Mn35In14.25В0.75Heus...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...
AbstractAdiabatic temperature change, resulting from MCE, is a complex effect depending on in-field ...
The magnetic and magnetocaloric characteristics of Ni50Mn35In15 Heusler alloy are studied in low and...
The magnetic properties and reversibility of the magnetocaloric effect of Ni50Mn35In15 have been stu...
iAbstract In this work, magnetic, magnetocaloric and structural properties are investigated in Ni-Mn...
We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by di...
Ni50Mn35In14.25B0.75 is a typical representative of the family of metamagnetic In-based Heusler allo...
The present pulsed high-magnetic-field study on Ni 50Mn35In15 gives an extra insight into the thermo...
Large magnetoresistance effects were observed in Ni50Mn50-xSnx Heusler alloys for concentrations 13≤...
Large magnetocaloric effects can be obtained in Ni-Mn-based Heusler alloys due to the magnetostructu...
The magnetic, magnetotransport, and magnetocaloric properties near compound phase transitions in Ni ...
It has been found that Ni50Mn35In14B exhibits with increasing temperature a first-order magnetostruc...
The studies of magnetocaloric properties, phase transitions, and phenomena related to magnetic heter...
We present the results of the studies of magnetic and magnetocaloric (MCE) properties of quaternary ...
Magnetocaloric effects (MCE) in the Ni50Mn35In15, Ni50.2Mn34.85In14.95, and Ni50Mn35In14.25В0.75Heus...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...
AbstractAdiabatic temperature change, resulting from MCE, is a complex effect depending on in-field ...
The magnetic and magnetocaloric characteristics of Ni50Mn35In15 Heusler alloy are studied in low and...
The magnetic properties and reversibility of the magnetocaloric effect of Ni50Mn35In15 have been stu...
iAbstract In this work, magnetic, magnetocaloric and structural properties are investigated in Ni-Mn...
We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by di...
Ni50Mn35In14.25B0.75 is a typical representative of the family of metamagnetic In-based Heusler allo...
The present pulsed high-magnetic-field study on Ni 50Mn35In15 gives an extra insight into the thermo...
Large magnetoresistance effects were observed in Ni50Mn50-xSnx Heusler alloys for concentrations 13≤...
Large magnetocaloric effects can be obtained in Ni-Mn-based Heusler alloys due to the magnetostructu...
The magnetic, magnetotransport, and magnetocaloric properties near compound phase transitions in Ni ...
It has been found that Ni50Mn35In14B exhibits with increasing temperature a first-order magnetostruc...
The studies of magnetocaloric properties, phase transitions, and phenomena related to magnetic heter...
We present the results of the studies of magnetic and magnetocaloric (MCE) properties of quaternary ...
Magnetocaloric effects (MCE) in the Ni50Mn35In15, Ni50.2Mn34.85In14.95, and Ni50Mn35In14.25В0.75Heus...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...