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- W3044914880 abstract "Abstract In this paper, we study the effects of Rashba spin-orbit interaction, quantum barrier shape, barrier height, etc. on the spin polarization and less studied superarrival of spin-dependent Gaussian wave-packets propagating through one-dimensional rectangular and inverse parabolic quantum barriers. We show that in some situations the transient inverse parabolic barrier can be regarded as a reflectionless dispersion reducing tool for wave-packet propagation applications. Spin up and down components of the wave-packet have different Superarrivals and they can be tuned by means of the strength of the Rashba parameter. The superarrival effect is also very sensitive to the strength of the nonlinearity and can be eliminated by using a small 0.3 nonlinearity strength. Superarrival depends just on the physical properties of the system and the spin polarization of the incident initial wave packet does not affect it." @default.
- W3044914880 created "2020-07-29" @default.
- W3044914880 creator A5059823905 @default.
- W3044914880 date "2020-11-01" @default.
- W3044914880 modified "2023-09-24" @default.
- W3044914880 title "Superarrival and spin polarization of spin-dependent wave-packets propagating through one-dimensional rectangular and inverse parabolic barriers: Rashba spin-orbit interaction and nonlinearity effects" @default.
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- W3044914880 doi "https://doi.org/10.1016/j.jmmm.2020.167247" @default.
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