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Clustermag

This resource has a 5.2 Ranking

Ranking is calculated from a formula comprised of user reviews and usage statistics. Learn more ›

Usage Stats
Overall Period: Updated 20 Nov, 2008
Users: 12
Jobs: 52
Avg. exec. time: 9 mins
Reviews & Citations
Google/IEEE
Avg. Review: 0.0 out of 5 stars
Citations: 0

12 users, detailed statistics

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Supporting Documents

Version 1.1 - published on 04 Sep, 2008
Contributor(s) Eldad Tamman
University of Massachusetts Amherst
At a glance Simulate clusters configurations of nanomagnets
Description This interactive simulator is designed to be and currently used as a research tool. The tool simulates 2D clusters configurations of nanomagnets and computes the hysteresis curve due to thermal noise and interaction between the nanomagnetic dots. In general, the simulator has two modes of operation: single run and multiple runs. In single run mode, the output will be the structure simulated, an Excel file containing snapshots of the system at dot flipping times, and the Hysteresis curve. In multiple runs mode, the simulator will output the structure simulated, the Excel file, and a normalized flipping histogram of each dot as well as an overlay of all the histograms together. Finally, the default values of the simulator are realistic.
Sponsored by

2 NSF Grants

References

Xiao, Q., R. V. Krotkov, and M. T. Tuominen. "Simulations of nanomagnet clusters with perpendicular uniaxial anisotropy for multilevel data storage." Jurnal of Applied Physics 99 (2006)

Xiao, Qijun, Tianyu Yang, Andrei Ursache, and Mark T. Tuominen. "Clusters of Interacting Single Domain Co nanomagnets for Multistate Perpendicular Magnetic media Applications."

Cite this work

If you reference this work in a publication, please cite as follows:

    Qijun Xiao,Craig Versek, Neal Anderson and Mark Tuominen

  • Tamman, Eldad (2008), "Clustermag," doi: 10254/nanohub-r4746.2.

    BibTex | EndNote

In addition, we would appreciate it if you would add the following acknowledgment to your publication:

  • Simulation services for results presented here were provided by the Network for Computational Nanotechnology (NCN) at nanoHUB.org

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