Spin-Wave-Mode Coexistence on the Nanoscale: A Consequence of the Oersted-Field-Induced Asymmetric Energy Landscape
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Title
Spin-Wave-Mode Coexistence on the Nanoscale: A Consequence of the Oersted-Field-Induced Asymmetric Energy Landscape
Authors
Keywords
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Journal
PHYSICAL REVIEW LETTERS
Volume 110, Issue 25, Pages -
Publisher
American Physical Society (APS)
Online
2013-06-19
DOI
10.1103/physrevlett.110.257202
References
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Related references
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- Spin torque oscillator frequency versus magnetic field angle: The prospect of operation beyond 65 GHz
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- Numerical Analysis of the Nonlinear Excitation of Subcritical Spin-Wave Modes Within a Micromagnetic Framework
- (2009) Giancarlo Consolo et al. IEEE TRANSACTIONS ON MAGNETICS
- Developments in nano-oscillators based upon spin-transfer point-contact devices
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- Spin transfer torques
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- Micromagnetic study of the above-threshold generation regime in a spin-torque oscillator based on a magnetic nanocontact magnetized at an arbitrary angle
- (2008) G. Consolo et al. PHYSICAL REVIEW B
- Model for a collimated spin-wave beam generated by a single-layer spin torque nanocontact
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- Time-domain studies of very-large-angle magnetization dynamics excited by spin transfer torques
- (2008) I. N. Krivorotov et al. PHYSICAL REVIEW B
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