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A cotunneling mechanism for all-electrical Electron Spin Resonance of single adsorbed atoms

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arxiv 1904.08183 v1 pith:CWQFEXKX submitted 2019-04-17 cond-mat.mes-hall

A cotunneling mechanism for all-electrical Electron Spin Resonance of single adsorbed atoms

classification cond-mat.mes-hall
keywords cotunnelingresonancespinall-electricalalternatingdependenceelectronexperimental
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The recent development of all-electrical electron spin resonance (ESR) in a scanning tunneling microscope (STM) setup has opened the door to vast applications. Despite the fast growing number of experimental works on STM-ESR, the fundamental principles remains unclear. By using a cotunneling picture, we show that the spin resonance signal can be explained as a time-dependent variation of the tunnel barrier induced by the alternating electric driving field. We demonstrate how this variation translates into the resonant frequency response of the direct current. Our cotunneling theory explains the main experimental findings. Namely, the linear dependence of the Rabi flop rate with the alternating bias amplitude, the absence of resonant response for spin-unpolarized currents, and the weak dependence on the actual atomic species.

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