Spin Transfer of Quantum Information between Majorana Modes and a Resonator
arXiv:1306.2339 · doi:10.1103/PhysRevLett.112.106402
Abstract
We show that resonant coupling and entanglement between a mechanical resonator and majorana bound states can be achieved via spin currents in a 1D quantum wire with strong spin-orbit interactions. The bound states induced by vibrating and stationary magnets can hybridize thus resulting in spin-current induced -periodic torque, as a function of the relative field angle, acting on the resonator. We study the feasibility of detecting and manipulating majorana bound states with the use of magnetic resonance force microscopy techniques.
4 pages and supplementary material; 4 figures
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