Magnetic interactions in a ferromagnetic honeycomb nanoscale network
Магнитные взаимодействия в ферромагнитной сотовой наномасштабной сети
2006-02-23
SCID: 54.1/abvqdmfw
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ferromagnetic honeycomb networkice-rule interactionmagnetic-force microscopymagnetoresistance measurementpermalloy nanowires
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Abstract (AI)
The magnetic structure and magnetization process in a permalloy wire-based honeycomb network have been investigated by means of magnetic-force microscopy (MFM) and magnetoresistance measurement. The MFM measurements show the remanent magnetic structures to be governed by magnetic interaction similar to the ice rule, which provides a direct analogy between the present honeycomb network and an Ising system on a kagom\'e lattice. The magnetoresistance measurements reveal that this interaction also dominates the magnetization processes in the network. By decreasing the exchange energy at the vertices of the network, the ice-rule type of interaction causes a transition of the magnetization process in the network.
Key Findings
1
Magnetic-force microscopy and magnetoresistance measurements characterize magnetic structures and magnetization in a permalloy wire-based honeycomb network.
2
Reducing exchange energy at network vertices induces a transition in the network’s magnetization process.
3
Remanent magnetic configurations are governed by an ice-rule-like interaction, directly analogizing the honeycomb network to an Ising system on a kagome lattice.
4
The same ice-rule-like interaction dominates magnetization processes, as revealed by magnetoresistance measurements.
Research Object
Permalloy wire-based ferromagnetic honeycomb nanoscale network
Research Subject
Magnetic interactions governing remanent structures and magnetization processes, including ice-rule-type behavior and exchange-energy-dependent transitions
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2006-02-23
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