Stochastic resonance in noise-induced transitions between self-oscillations and equilibria in spin-valve nanomagnets

被引:20
作者
d'Aquino, M. [1 ]
Serpico, C. [2 ]
Bonin, R. [3 ]
Bertotti, G. [4 ]
Mayergoyz, I. D. [5 ,6 ]
机构
[1] Univ Napoli Parthenope, Dipartimento Tecnol, I-80143 Naples, Italy
[2] Univ Naples Federico II, Dipartimento Ingn Elettr, I-80125 Naples, Italy
[3] Politecn Torino, CSPP LIM, I-11029 Aosta, Italy
[4] Ist Nazl Ric Metrol INRiM, I-10135 Turin, Italy
[5] Univ Maryland, ECE Dept, College Pk, MD 20742 USA
[6] Univ Maryland, UMIACS, College Pk, MD 20742 USA
关键词
POLARIZED CURRENT; NANO-OSCILLATORS; PHASE-LOCKING; DRIVEN;
D O I
10.1103/PhysRevB.84.214415
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The thermally induced synchronization between magnetization transitions and "weak" ac excitations is studied for spin-transfer oscillators. A theoretical approach, based on the separation of time scales, is developed to investigate this physical phenomenon. By applying the appropriate averaging technique to the Fokker-Planck equation associated with the stochastic magnetization dynamics, a stochastic differential equation for the "slow" (energy) variable is derived. This equation is used to analyze intrawell thermal transitions between magnetization equilibria and self-oscillations. It is demonstrated that the thermally induced synchronization between magnetization transitions and ac excitation can be viewed as a stochastic resonance effect. It is shown that this effect occurs in spin-transfer nano-oscillators both in the classical case of subthreshold ac excitation as well as in the suprathreshold case. The theoretical predictions are in very good agreement with simulations of the Landau-Lifshitz-Slonczewski dynamics.
引用
收藏
页数:10
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