In this work, we report the structure and magnetic properties of DyFe0.6Mn0.4O3, which crystallizes in orthorhombic perovskite structure with a space group of Pnma. For DyFe0.6Mn0.4O3, a spin reorientation transition, from the canted antiferromagnetic (AFM) state to a collinear AFM state, is found to occur around 310 K, which is remarkably higher than the corresponding transition in DyFeO3. This will greatly facilitate its practical electronic applications near room temperature. More importantly, the AC susceptibility reveals that its frequency-dependent spin reorientation temperature decreases with increasing frequency, which is totally opposite to that of a spin glass. The relaxation time of this process is also much larger than conventio...
The floating-zone method with different growth ambiences has been used to selectively obtain hexagon...
DyFeO3 exhibits a weak ferromagnetism (TNFe ∼ 645 K) that disappears below a spin-reorientation (Mor...
We report the crystal growth, structure analysis and magnetic phase transitions in the single crysta...
In this work, we report the structure and magnetic properties of DyFe0.6Mn0.4O3, which crystallizes ...
We report on spin Hall magnetoresistance (SMR) and spin Seebeck effect (SSE) in a single crystal of ...
peer reviewedSpin reorientation and magnetization reversal are two important features of the rare-ea...
International audienceIn this work we present the magnetic structures and spin reorientation (SR) tr...
The present work is aimed at exploring the local atomic structure modifications related to the spin ...
Spin-reorientation phase transitions that involve the rotation of a crystal's magnetization have bee...
2019 American Chemical Society. Rare-earth orthoferrites are receiving ever-increasing attention for...
We present here the detailed structural, magnetic, and magnetodielectric properties of polycrystalli...
An orthorhombic DyMnO3 single crystal has been studied in magnetic fields up to 14 T and between 3 K...
Dans le composé DyFe3 on a déterminé, en utilisant l'effet Mössbauer, la direction d'un axe d'aimant...
We investigate the interplay of magnetization and lattice vibrations in rare-earth orthoferrites RFe...
In this paper, we present a comprehensive study of magnetic dynamics in the rare-earth orthoferrite ...
The floating-zone method with different growth ambiences has been used to selectively obtain hexagon...
DyFeO3 exhibits a weak ferromagnetism (TNFe ∼ 645 K) that disappears below a spin-reorientation (Mor...
We report the crystal growth, structure analysis and magnetic phase transitions in the single crysta...
In this work, we report the structure and magnetic properties of DyFe0.6Mn0.4O3, which crystallizes ...
We report on spin Hall magnetoresistance (SMR) and spin Seebeck effect (SSE) in a single crystal of ...
peer reviewedSpin reorientation and magnetization reversal are two important features of the rare-ea...
International audienceIn this work we present the magnetic structures and spin reorientation (SR) tr...
The present work is aimed at exploring the local atomic structure modifications related to the spin ...
Spin-reorientation phase transitions that involve the rotation of a crystal's magnetization have bee...
2019 American Chemical Society. Rare-earth orthoferrites are receiving ever-increasing attention for...
We present here the detailed structural, magnetic, and magnetodielectric properties of polycrystalli...
An orthorhombic DyMnO3 single crystal has been studied in magnetic fields up to 14 T and between 3 K...
Dans le composé DyFe3 on a déterminé, en utilisant l'effet Mössbauer, la direction d'un axe d'aimant...
We investigate the interplay of magnetization and lattice vibrations in rare-earth orthoferrites RFe...
In this paper, we present a comprehensive study of magnetic dynamics in the rare-earth orthoferrite ...
The floating-zone method with different growth ambiences has been used to selectively obtain hexagon...
DyFeO3 exhibits a weak ferromagnetism (TNFe ∼ 645 K) that disappears below a spin-reorientation (Mor...
We report the crystal growth, structure analysis and magnetic phase transitions in the single crysta...