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Theory of Electron Spin Resonance in Scanning Tunneling Microscopy (2403.20247v1)

Published 29 Mar 2024 in cond-mat.mes-hall

Abstract: Electron spin resonance (ESR) spectroscopy in scanning tunneling microscopy (STM) has enabled probing the electronic structure of single magnetic atoms and molecules on surfaces with unprecedented energy resolution, as well as demonstrating coherent manipulation of single spins. Despite this remarkable success, the field could still be greatly advanced by a more quantitative understanding of the ESR-STM physical mechanisms. Here, we present a theory of ESR-STM which quantitatively models not only the ESR signal itself, but also the full background tunneling current, from which the ESR signal is derived. Our theory is based on a combination of Green's function techniques to describe the electron tunneling and a quantum master equation for the dynamics of the spin system along with microwave radiation interacting with both the tunneling current and the spin system. We show that this theory is able to quantitatively reproduce the experimental results for a spin-1/2 system (TiH molecules on MgO) across many orders of magnitude in tunneling current, providing access to the relaxation and decoherence rates that govern the spin dynamics due to intrinsic mechanisms and to the applied bias voltage. More importantly, our work establishes that: (i) sizable ESR signals, which are a measure of microwave-induced changes in the junction magnetoresistance, require surprisingly high tip spin polarizations, (ii) the coupling of the magnetization dynamics to the microwave field gives rise to the asymmetric ESR spectra often observed in this spectroscopy. Additionally, our theory provides very specific predictions for the dependence of the relaxation and decoherence times on the bias voltage and the tip-sample distance. Finally, with the help of electromagnetic simulations, we find that the transitions in our ESR-STM experiments can be driven by the ac magnetic field at the junction.

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References (12)
  1. A. Abragam and B. Bleaney, Electron Paramagnetic Resonance of Transition Ions (Oxford Classic Texts in the Physical Sciences, 2012).
  2. R. M. Fratila and A. H. Velders, Small-volume nuclear magnetic resonance spectroscopy, Annu. Rev. Anal. Chem. 4, 227 (2011).
  3. F. Delgado and N. Lorente, A theoretical review on the single-impurity electron spin resonance on surfaces, Prog. Surf. Sci. 96, 100625 (2021).
  4. F. Delgado, Spin dynamics of current-driven single magnetic adatoms and molecules, Physical Review B 82 (2010).
  5. J. Fernández-Rossier, Theory of single-spin inelastic tunneling spectroscopy, Phys. Rev. Lett. 102, 256802 (2009).
  6. M. Ternes, Spin excitations and correlations in scanning tunneling spectroscopy, New J. Phys. 17, 063016 (2015).
  7. F. Delgado and J. Fernández-Rossier, Spin decoherence of magnetic atoms on surfaces, Prog. Surf. Sci. 92, 40 (2017).
  8. J. C. Cuevas and E. Scheer, Molecular Electronics: An Introduction To Theory And Experiment, 2nd ed. (World Scientific, Singapore, 2017).
  9. P. K. Tien and J. P. Gordon, Multiphoton process observed in the interaction of microwave fields with the tunneling between superconductor films, Phys. Rev. 129, 647 (1963).
  10. A. Fetter and J. Walecka, Quantum Theory of Many-Particle Systems, Dover Books on Physics (Dover Publications, 2012).
  11. H.-P. Breuer and F. Petruccione, The Theory of Open Quantum Systems (Oxford University Press, 2007).
  12. P. Berggren and J. Fransson, Electron Paramagnetic Resonance of Single Magnetic Moment on a Surface, Sci. Rep. 6, 25584 (2016).

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