The B2-ordered intermetallic magnetic compound FeRh exhibits a thermodynamically first-order phase transition in the vicinity of room temperature that makes it a highly intriguing subject for both fundamental and applied study. On heating through the transition the magnetic character changes from antiferromagnetic to ferromagnetic order with an accompanying large increase in the electrical conductivity and an abrupt expansion in the lattice structure. Accompanying these effects is a very large entropy change comprising both magnetic and lattice contributions. As well as being driven by temperature, these coupled phase transitions may be driven by the application or removal of a magnetic field, or, because of the extremely strong lattice-spi...
The metamagnetic transition from an antiferromagnetic (AF) to the ferromagnetic (FM) state in FeRh a...
The metamagnetic transition from an antiferromagnetic (AF) to the ferromagnetic (FM) state in FeRh a...
The chemically ordered B2 phase of equiatomic FeRh is known to absorb or evolve a significant latent...
FeRh is a unique alloy which shows temperature dependent phase transition magnetic properties. The l...
FeRh is a unique alloy which shows temperature dependent phase transition magnetic properties. The l...
FeRh thin films feature unique characteristics due to the first-order phase transition from the anti...
In materials where two or more ordering degrees of freedom are closely matched in their free energie...
In materials where two or more ordering degrees of freedom are closely matched in their free energie...
In materials where two or more ordering degrees of freedom are closely matched in their free energie...
The equiatomic FeRh alloy undergoes a first-order phase transition from an antiferromagnetic (AFM) t...
The equiatomic FeRh alloy undergoes a first-order phase transition from an antiferromagnetic (AFM) t...
The magnetostructural response of a Ni-modified B2-type FeRh compound of composition, (FeNi)Rh is re...
Simple ferromagnetic (FM) and antiferromagnetic (AF) materials such as Fe and Cr become paramagnetic...
Coupled order parameters in phase-transition materials can be controlled using various driving force...
The intermetallic FeRh system has displayed tremendous fascination to investigators due to its remar...
The metamagnetic transition from an antiferromagnetic (AF) to the ferromagnetic (FM) state in FeRh a...
The metamagnetic transition from an antiferromagnetic (AF) to the ferromagnetic (FM) state in FeRh a...
The chemically ordered B2 phase of equiatomic FeRh is known to absorb or evolve a significant latent...
FeRh is a unique alloy which shows temperature dependent phase transition magnetic properties. The l...
FeRh is a unique alloy which shows temperature dependent phase transition magnetic properties. The l...
FeRh thin films feature unique characteristics due to the first-order phase transition from the anti...
In materials where two or more ordering degrees of freedom are closely matched in their free energie...
In materials where two or more ordering degrees of freedom are closely matched in their free energie...
In materials where two or more ordering degrees of freedom are closely matched in their free energie...
The equiatomic FeRh alloy undergoes a first-order phase transition from an antiferromagnetic (AFM) t...
The equiatomic FeRh alloy undergoes a first-order phase transition from an antiferromagnetic (AFM) t...
The magnetostructural response of a Ni-modified B2-type FeRh compound of composition, (FeNi)Rh is re...
Simple ferromagnetic (FM) and antiferromagnetic (AF) materials such as Fe and Cr become paramagnetic...
Coupled order parameters in phase-transition materials can be controlled using various driving force...
The intermetallic FeRh system has displayed tremendous fascination to investigators due to its remar...
The metamagnetic transition from an antiferromagnetic (AF) to the ferromagnetic (FM) state in FeRh a...
The metamagnetic transition from an antiferromagnetic (AF) to the ferromagnetic (FM) state in FeRh a...
The chemically ordered B2 phase of equiatomic FeRh is known to absorb or evolve a significant latent...