Spin-dependent electron transport in an open double quantum ring, when each ring is made up of four quantum dots and threaded by a magnetic flux, is studied. Two independent and tunable gate voltages are applied to induce Rashba spin-orbit effect in the quantum rings. Using non-equilibrium Green's function formalism, we study the effects of electron-electron interaction on spin-dependent electron transport and show that although the electron-electron interaction induces an energy gap, it has no considerable effect when the bias voltage is sufficiently high. We also show that the double quantum ring can operate as a spin-filter for both spin up and spin down electrons. The spin-polarization of transmitted electrons can be tuned from −1 (pure spin-down current) to +1 (pure spin-up current) by changing the magnetic flux and/or the gates voltage. Also, the double quantum ring can act as AND and NOR gates when the system parameters such as Rashba coefficient are properly adjusted.
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28 February 2014
Research Article|
February 27 2014
Spin-polarization and spin-dependent logic gates in a double quantum ring based on Rashba spin-orbit effect: Non-equilibrium Green's function approach
Leila Eslami;
Leila Eslami
a)
Department of Physics, Iran University of Science and Technology
, Tehran 16846, Iran
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Mahdi Esmaeilzadeh
Mahdi Esmaeilzadeh
b)
Department of Physics, Iran University of Science and Technology
, Tehran 16846, Iran
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J. Appl. Phys. 115, 084307 (2014)
Article history
Received:
August 12 2013
Accepted:
February 18 2014
Citation
Leila Eslami, Mahdi Esmaeilzadeh; Spin-polarization and spin-dependent logic gates in a double quantum ring based on Rashba spin-orbit effect: Non-equilibrium Green's function approach. J. Appl. Phys. 28 February 2014; 115 (8): 084307. https://doi.org/10.1063/1.4867219
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