Abstract
AbstractSpatially separating electrons of different spins and efficiently generating spin currents are crucial steps towards building practical spintronics devices. Transverse magnetic focusing is a potential technique to accomplish both those tasks. In a material where there is significant Rashba spin–orbit interaction, electrons of different spins will traverse different paths in the presence of an external magnetic field. Experiments have demonstrated the viability of this technique by measuring conductance spectra that indicate the separation of spin-up and spin-down electrons. However the effect that the geometry of the leads has on these measurements is not well understood. By simulating an InGaAs-based transverse magnetic focusing device, we show that the resolution of features in the conductance spectra is affected by the shape, separation and width of the leads. Furthermore, the number of subbands occupied by the electrons in the leads affects the ratio between the amplitudes of the spin-split peaks in the spectra. We simulated devices with random onsite potentials and observed that transverse magnetic focusing devices are sensitive to disorder. Ultimately we show that careful choice and characterisation of device geometry are crucial for correctly interpreting the results of transverse magnetic focusing experiments.
Funder
Centre of Excellence in Future Low-Energy Electronics Technologies, Australian Research Council
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,General Materials Science
Reference36 articles.
1. Xia J, Ge W, Chang K (2012) Semiconductor spintronics. World Scientific
2. Hirohata A, Yamada K, Nakatani Y, Prejbeanu IL, Diény B, Pirro P et al (2020) Review on spintronics: principles and device applications. J Magn Magn Mater 509:166711
3. Lo ST, Chen CH, Fan JC, Smith LW, Creeth GL, Chang CW et al (2017) Controlled spatial separation of spins and coherent dynamics in spin–orbit-coupled nanostructures. Nat Commun 8(1):15997
4. Bychkov YA, Rashba EI (1984) Properties of a 2D electron gas with lifted spectral degeneracy. J Exp Theor Phys Lett 39(2):78–81
5. Tsoi VS (1974) Focusing of electrons in a metal by a transverse magnetic field. ZhETF Pisma Redaktsiiu 19:114
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献