Spin beats and magnetic dynamics in II-VI quantum structures

被引:0
|
作者
Baumberg, J.J. [1 ]
Crooker, S.A. [1 ]
Awschalom, D.D. [1 ]
Samarth, N. [1 ]
机构
[1] Univ of California, Santa Barbara, CA, United States
关键词
Charge carriers - Dynamics - Faraday effect - Heterojunctions - Ions - Magnetic field effects - Magnetic relaxation - Magnetization - Nanostructured materials - Optical rotation - Scattering - Semiconductor quantum wells;
D O I
10.4028/www.scientific.net/msf.182-184.429
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学科分类号
摘要
We use a novel optical probe of magnetization to explore the evolution of carrier spin scattering and magnetic dynamics in quantum-confined geometries. II-VI magnetic heterostructures are studied using femtosecond Faraday rotation and exhibit both carrier phase- (approx. 1 ps) and spin-scattering (approx. 6 ps) in concert with a field-tunable terahertz quantum-beating of the total carrier spin. Spin-flip processes experienced by photoexcited carriers as they tunnel through nanometer-thick magnetic barriers produce a magnetic perturbation strongly sensitive to the initial magnetic state and the spin-orientation of the pumped carriers. Once these carriers have recombined (approx. 70 ps), the magnetic ions relax through completely different channels of significantly slower decay rate (100 ps - 10 ns). The relaxation characteristics are found to be substantially influenced by exchange coupling between adjacent magnetic ions at low temperatures (T
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页码:429 / 434
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