We investigate the magnetization reversal of a magnetic dot array by means of magneto-optical Kerr effect and magnetic force microscopy measurements as well as micromagnetic simulations. We find that the finite dimensions of the dot array introduce a global configurational anisotropy that promotes state transitions first in dots near the sample boundaries. From there, the reversal process expands towards the sample body by means of collective magnetization processes originating in the magnetostatic coupling between the dots. These processes are characterized by transition avalanches and the formation of magnetization chains. These findings are important in the development of applications that rely on a robust control of dot magnetization...
We present a magnetic force microscopy (MFM) analysis of arrays of submicron-scale Co dots fabricate...
Using the magneto-optic Kerr effect (MOKE) and magnetic force microscopy we have investigated the sh...
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
Various proposals for future magnetic memories, data processing devices, and sensors rely on a prec...
We analyzed with MFM and MOKE finite squared (rectangular) arrays of circular (elliptical) magnetic ...
Electron beam patterned permalloy circular dots of 700 nm diameter with small separations were studi...
Using the Vectorial Magneto-Optic Kerr Effect (V-MOKE) and numerical simulations, we have investigat...
Magnetic properties of Fe nanodots are simulated using a scaling technique and Monte Carlo method, i...
Anomalous Hall Effect (AHE) measurements have previously been used to measure the magnetization of L...
Dot arrays with diameter ranging from 80 to 245 nm are made of Co80Pt20 films with large perpendicul...
Anomalous Hall Effect (AHE) measurements have previously been used to measure the magnetization of L...
We present a magnetic force microscopy (MFM) analysis of arrays of submicron-scale Co dots fabricate...
We present a systematic investigation of the magnetic properties and magnetization reversal processe...
The broad prospects for the practical uses of magnetic nanostructures make the control of their mag...
We have carried out a detailed study of the magnetic switching in square lattice cobalt antidot arra...
We present a magnetic force microscopy (MFM) analysis of arrays of submicron-scale Co dots fabricate...
Using the magneto-optic Kerr effect (MOKE) and magnetic force microscopy we have investigated the sh...
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
Various proposals for future magnetic memories, data processing devices, and sensors rely on a prec...
We analyzed with MFM and MOKE finite squared (rectangular) arrays of circular (elliptical) magnetic ...
Electron beam patterned permalloy circular dots of 700 nm diameter with small separations were studi...
Using the Vectorial Magneto-Optic Kerr Effect (V-MOKE) and numerical simulations, we have investigat...
Magnetic properties of Fe nanodots are simulated using a scaling technique and Monte Carlo method, i...
Anomalous Hall Effect (AHE) measurements have previously been used to measure the magnetization of L...
Dot arrays with diameter ranging from 80 to 245 nm are made of Co80Pt20 films with large perpendicul...
Anomalous Hall Effect (AHE) measurements have previously been used to measure the magnetization of L...
We present a magnetic force microscopy (MFM) analysis of arrays of submicron-scale Co dots fabricate...
We present a systematic investigation of the magnetic properties and magnetization reversal processe...
The broad prospects for the practical uses of magnetic nanostructures make the control of their mag...
We have carried out a detailed study of the magnetic switching in square lattice cobalt antidot arra...
We present a magnetic force microscopy (MFM) analysis of arrays of submicron-scale Co dots fabricate...
Using the magneto-optic Kerr effect (MOKE) and magnetic force microscopy we have investigated the sh...
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