Skyrmion based microwave detectors and harvesting
arXiv:1510.03841 · doi:10.1063/1.4938539
Abstract
Magnetic skyrmions are topologically protected states that are very promising for the design of the next generation of ultralow-power electronic devices. In this letter, we propose a magnetic tunnel junction based spin-transfer torque diode with a magnetic skyrmion as ground state and a perpendicular polarizer patterned as nanocontact for a local injection of the current. The key result is the possibility to achieve sensitivities (i.e. detection voltage over input microwave power) larger than 2000V/W for optimized contact diameters. Our results can be very useful for the identification of a new class of spin-torque diodes with a non-uniform ground state.
10 pages, 5 figures
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- First Principles Calculation of Dzyaloshinskii-Moriya Interaction: A Green's function Approach
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- Stabilization and helicity control of hybrid magnetic skyrmion
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- Magnetic skyrmion spectrum under voltage excitation and its linear modulation
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- Determining key spin-orbitronic parameters by means of propagating spin waves
- Ultra-sensitive voltage-controlled skyrmion-based spintronic diode
- Global Rotation of Skyrmion Bags under Vertical Microwave Fields
- Universality of defect-skyrmion interaction profiles
- Reversal of the skyrmion topological deflection across ferrimagnetic angular momentum compensation
- Quadrature skyrmions in two-dimensionally arrayed parametric resonators