English

Mechanism of current noise spectrum in a nonequilibirum Kondo dot system

Mesoscale and Nanoscale Physics 2024-06-19 v1

Abstract

We systematically study the nonequilibirum Kondo mechanisms of quantum noise spectrum based on the accurate dissipaton--equation--of--motion evaluations. By comparing the noise spectra between the equilibrium and nonequilibrium cases and between the non-Kondo and Kondo regimes, we identify the nonequilibrium Kondo features in the current noise spectrum, appearing in the region of ω[eV,eV]\omega\in [-eV, eV]. The Kondo characteristic at ω=±eV=±(μLμR)\omega=\pm eV=\pm (\mu_{\rm L}-\mu_{\rm R}) display asymmetrical upturns and remarkable peaks in S(ω)S(\omega) and dS(ω)/dωdS(\omega)/d\omega, respectively. These features are originated from the Rabi interference of the transport current dynamics, with the Kondo oscillation frequency of eV|eV|. The minor but very distinguishable inflections, crossing over ω=eV\omega=-eV to ω=+eV\omega=+eV, would be related to a sort of Kondo-Fano interference between two Kondo resonances channels.

Keywords

Cite

@article{arxiv.2012.14102,
  title  = {Mechanism of current noise spectrum in a nonequilibirum Kondo dot system},
  author = {Hong Mao and Jinshuang Jin and Shikuan Wang and YiJing Yan},
  journal= {arXiv preprint arXiv:2012.14102},
  year   = {2024}
}

Comments

7 pages, 3 figures