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Stochastic Resonance in Magnetic Nan...
~
Cheng, Xiao.
Stochastic Resonance in Magnetic Nanostructures.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Stochastic Resonance in Magnetic Nanostructures.
作者:
Cheng, Xiao.
面頁冊數:
132 p.
附註:
Source: Dissertation Abstracts International, Volume: 72-04, Section: B, page: 1924.
附註:
Adviser: Ilya Krivorotov.
Contained By:
Dissertation Abstracts International72-04B.
標題:
Nanoscience.
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3440039
ISBN:
9781124462967
Stochastic Resonance in Magnetic Nanostructures.
Cheng, Xiao.
Stochastic Resonance in Magnetic Nanostructures.
- 132 p.
Source: Dissertation Abstracts International, Volume: 72-04, Section: B, page: 1924.
Thesis (Ph.D.)--University of California, Irvine, 2011.
This dissertation reports the observation of unusual types of microwave-frequency nonlinear magnetization dynamics co-excited by alternating spin transfer torque and thermal fluctuations. In these dynamics, temperature strongly enhances the amplitude of GHz-range precession of magnetization and enables excitation of nonlinear dynamical states of magnetization by weak alternating spin transfer torque. These thermally activated dynamics are explained in terms of non-adiabatic stochastic resonance of magnetization driven by spin transfer torque.
ISBN: 9781124462967Subjects--Topical Terms:
220425
Nanoscience.
Stochastic Resonance in Magnetic Nanostructures.
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This dissertation reports the observation of unusual types of microwave-frequency nonlinear magnetization dynamics co-excited by alternating spin transfer torque and thermal fluctuations. In these dynamics, temperature strongly enhances the amplitude of GHz-range precession of magnetization and enables excitation of nonlinear dynamical states of magnetization by weak alternating spin transfer torque. These thermally activated dynamics are explained in terms of non-adiabatic stochastic resonance of magnetization driven by spin transfer torque.
520
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This dissertation also shows that this new type of magnetic stochastic resonance is observed in both nano-scale spin valves and MgO-based magnetic tunnel junctions. It is described that a nano-scale magnetic tunnel junction utilizing a nonlinear magnetic resonance excited by spin transfer torque can achieve intrinsic detector sensitivity of 360 mV/muW. In magnetic tunnel junctions, the maximum sensitivity achieved is larger than that of conventional semiconductor Schottky diodes. It is proposed that stochastic resonance in nanomagnets provides a promising potential for application in magnetic field sensors and microwave signal detectors of nano-scale dimensions.
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