Spin-injection experiment.

作者: Mark Johnson , R. H. Silsbee

DOI: 10.1103/PHYSREVB.37.5326

关键词: Interface (computing)Nuclear magnetic resonanceComputational physicsHanle effectSample preparationSignalCoupling (physics)PhysicsDetectorSpin-½Magnetic field

摘要: The spin-injection experiment is a two-probe, spin-injector and detector that has demonstrated the validity of charge-spin coupling at ferromagnet-paramagnet interface. spin coupled signal unambiguously identified by utilizing Hanle effect; this approach results in new, nonresonance technique for measuring conduction-electron spin-relaxation times vanishingly small applied magnetic fields. Details are presented. apparatus techniques sample preparation described. Qualitative quantitative analyses data given, along with numerous examples. discussed within framework models developed preceding paper, few applications new mentioned.

参考文章(8)
Mark Johnson, R. H. Silsbee, Thermodynamic analysis of interfacial transport and of the thermomagnetoelectric system. Physical Review B. ,vol. 35, pp. 4959- 4972 ,(1987) , 10.1103/PHYSREVB.35.4959
R. P. Giffard, R. A. Webb, J. C. Wheatley, Principles and methods of low-frequency electric and magnetic measurements using an rf-biased point-contact superconducting device Journal of Low Temperature Physics. ,vol. 6, pp. 533- 610 ,(1972) , 10.1007/BF00644085
Daniel Lubzens, Sheldon Schultz, Observation of an Anomalous Frequency Dependence of the Conduction-Electron Spin Resonance in Al Physical Review Letters. ,vol. 36, pp. 1104- 1106 ,(1976) , 10.1103/PHYSREVLETT.36.1104
The Electrical Conductivity of Transition Metals Proceedings of The Royal Society A: Mathematical, Physical and Engineering Sciences. ,vol. 153, pp. 699- 717 ,(1936) , 10.1098/RSPA.1936.0031
K. Binder, A. P. Young, Spin glasses: Experimental facts, theoretical concepts, and open questions Reviews of Modern Physics. ,vol. 58, pp. 801- 976 ,(1986) , 10.1103/REVMODPHYS.58.801
D. M. Eigler, S. Schultz, Measurement of conduction-electron spin relaxation due to rare gases physisorbed on a lithium surface. Physical Review Letters. ,vol. 54, pp. 1185- 1188 ,(1985) , 10.1103/PHYSREVLETT.54.1185