The magnetic anisotropy of single-domain magnetic nanoparticles can influence their behaviour significantly even at temperatures above the blocking temperature as conventionally defined. We compare the magnetic properties of such nanoparticles that are free to rotate, and the same nanoparticles with random but fixed orientations. When free to rotate, the particles show Langevin behaviour as expected, but when the orientations are fixed, their magnetic anisotropy causes deviations from this behaviour. These deviations may be observed directly in the M-H curves. They also cause a step in the M-T curve measured for a zero-field cooled sample of nanoparticles suspended in a solvent at the solvent's melting point. The step occurs because magneti...
Using Ferromagnetic Resonance (FMR) technique, we have investigated the temperature dependence and a...
Collective magnetization dynamics in nanoparticle assemblies is of current interest as it forms the ...
We focus on an in-depth study of the forced dynamics of a ferromagnetic single-domain uniaxial nanop...
The magnetic anisotropy of single-domain magnetic nanoparticles can influence their behaviour signif...
In magnetic nanoparticles (NPs), the observed increase in the effective magnetic anisotropy Keff wit...
Nanoparticles of bulk antiferromagnets often exhibit ferromagnetic behavior due to uncompensated sur...
We consider the probability of a magnetic nanoparticle to flip its magnetisation near the blocking t...
A simple method is proposed to obtain the effective anisotropy energy density Keff of an assembly of...
In this work we have applied theoretical calculations to new experimental measurements of the effect...
The effect of surface anisotropy on the magnetization reversal in small magnetic particles is invest...
The distribution of shape anisotropy constants in two colloids of iron oxide nanoparticles has been ...
科研費報告書収録論文(課題番号:13555087・基盤研究(B)(2) ・H13~H15/研究代表者:北上, 修/ナノ磁性ドット規則配列格子の磁気的挙動の解明と超高密度メモリーへの応用
Collective magnetization dynamics in nanoparticle assemblies is of current interest as it forms the ...
AbstractWe report in this study the effect of the competition between cubic and uniaxial anisotropie...
Using ferromagnetic resonance (FMR) technique, we have investigated the temperature dependence and a...
Using Ferromagnetic Resonance (FMR) technique, we have investigated the temperature dependence and a...
Collective magnetization dynamics in nanoparticle assemblies is of current interest as it forms the ...
We focus on an in-depth study of the forced dynamics of a ferromagnetic single-domain uniaxial nanop...
The magnetic anisotropy of single-domain magnetic nanoparticles can influence their behaviour signif...
In magnetic nanoparticles (NPs), the observed increase in the effective magnetic anisotropy Keff wit...
Nanoparticles of bulk antiferromagnets often exhibit ferromagnetic behavior due to uncompensated sur...
We consider the probability of a magnetic nanoparticle to flip its magnetisation near the blocking t...
A simple method is proposed to obtain the effective anisotropy energy density Keff of an assembly of...
In this work we have applied theoretical calculations to new experimental measurements of the effect...
The effect of surface anisotropy on the magnetization reversal in small magnetic particles is invest...
The distribution of shape anisotropy constants in two colloids of iron oxide nanoparticles has been ...
科研費報告書収録論文(課題番号:13555087・基盤研究(B)(2) ・H13~H15/研究代表者:北上, 修/ナノ磁性ドット規則配列格子の磁気的挙動の解明と超高密度メモリーへの応用
Collective magnetization dynamics in nanoparticle assemblies is of current interest as it forms the ...
AbstractWe report in this study the effect of the competition between cubic and uniaxial anisotropie...
Using ferromagnetic resonance (FMR) technique, we have investigated the temperature dependence and a...
Using Ferromagnetic Resonance (FMR) technique, we have investigated the temperature dependence and a...
Collective magnetization dynamics in nanoparticle assemblies is of current interest as it forms the ...
We focus on an in-depth study of the forced dynamics of a ferromagnetic single-domain uniaxial nanop...