We present an efficient computational approach to evaluate field-dependent entropy of magnetocaloric materials from ab-initio methods. The temperature dependence is reported for the entropy change, specific heat and magnetization for hcp Gd. To obtain optimal accuracy in the calculations, a mixed-scheme for magnetic Monte Carlo simulations is proposed and found to be superior to using pure quantum or classic statistics. It is demonstrated that lattice and magnetic contributions play a role in the entropy change and that the dominating contribution comes from the magnetic contribution. The total calculated entropy change agrees with measurements at room temperature. IMPACT STATEMENT Demonstration of the accuracy of ab-initio theory, coupled ...
This chapter reviews the basic aspects governing magnetocaloric materials from the physics and therm...
In this paper we discuss the determination of the s(Ha,T) entropy constitutive relation of magnetoca...
A magnetic-to-thermal energy conversion, derived from the continuous modulation of intrinsic exchang...
We present an efficient computational approach to evaluate field-dependent entropy of magnetocaloric...
We present an efficient computational approach to evaluate field-dependent entropy of magnetocaloric...
Aiming to predict new materials for magnetic refrigeration from high-throughput calculations asks fo...
The magnetocaloric effect may be assessed indirectly by expressing it as the change in magnetic entr...
In this thesis, a numerical study of simulating and computing the magnetocaloric properties of magne...
The magnetocaloric effect may be assessed indirectly by expressing it as the change in magnetic entr...
The field dependence of the magnetic entropy change of ferromagnetic lanthanide-based materials has ...
International audienceIn this paper, a combination of DFT study and Monte Carlo (MC) simulations has...
International audienceIn this paper, a combination of DFT study and Monte Carlo (MC) simulations has...
A four-parameter method has been developed to determine the magnetocaloric effect associated with a ...
International audienceIn this paper, a combination of DFT study and Monte Carlo (MC) simulations has...
This chapter reviews the basic aspects governing magnetocaloric materials from the physics and therm...
This chapter reviews the basic aspects governing magnetocaloric materials from the physics and therm...
In this paper we discuss the determination of the s(Ha,T) entropy constitutive relation of magnetoca...
A magnetic-to-thermal energy conversion, derived from the continuous modulation of intrinsic exchang...
We present an efficient computational approach to evaluate field-dependent entropy of magnetocaloric...
We present an efficient computational approach to evaluate field-dependent entropy of magnetocaloric...
Aiming to predict new materials for magnetic refrigeration from high-throughput calculations asks fo...
The magnetocaloric effect may be assessed indirectly by expressing it as the change in magnetic entr...
In this thesis, a numerical study of simulating and computing the magnetocaloric properties of magne...
The magnetocaloric effect may be assessed indirectly by expressing it as the change in magnetic entr...
The field dependence of the magnetic entropy change of ferromagnetic lanthanide-based materials has ...
International audienceIn this paper, a combination of DFT study and Monte Carlo (MC) simulations has...
International audienceIn this paper, a combination of DFT study and Monte Carlo (MC) simulations has...
A four-parameter method has been developed to determine the magnetocaloric effect associated with a ...
International audienceIn this paper, a combination of DFT study and Monte Carlo (MC) simulations has...
This chapter reviews the basic aspects governing magnetocaloric materials from the physics and therm...
This chapter reviews the basic aspects governing magnetocaloric materials from the physics and therm...
In this paper we discuss the determination of the s(Ha,T) entropy constitutive relation of magnetoca...
A magnetic-to-thermal energy conversion, derived from the continuous modulation of intrinsic exchang...