One- and many-body effects on mirages in quantum corrals
arXiv:cond-mat/0208533 · doi:10.1103/PhysRevB.68.035411
Abstract
Recent interesting experiments used scanning tunneling microscopy to study systems involving Kondo impurities in quantum corrals assembled on Cu or noble metal surfaces. The solution of the two-dimensional one-particle Schrodinger equation in a hard wall corral without impurity is useful to predict the conditions under which the Kondo effect can be projected to a remote location (the quantum mirage). To model a soft circular corral, we solve this equation under the potential W*delta(r-r0), where r is the distance to the center of the corral and r0 its radius. We expand the Green's function of electron surface states Gs0 for r<r0 as a discrete sum of contributions from single poles at energies epsilon_i-I*delta_i. The imaginary part delta_i is the half-width of the resonance produced by the soft confining potential, and turns out to be a simple increasing function of epsilon_i. In presence of an impurity, we solve the Anderson model at arbitrary temperatures using the resulting expression for Gs0 and perturbation theory up to second order in the Coulomb repulsion U. We calculate the resulting change in the differential conductance Delta dI/dV as a function of voltage and space, in circular and elliptical corrals, for different conditions, including those corresponding to recent experiments. The main features are reproduced. The role of the direct hybridization between impurity and bulk, the confinement potential, the size of the corral and temperature on the intensity of the mirage are analyzed. We also calculate spin-spin correlation functions.
13 pages, 12 figures, accepted for publication in Phys. Rev. B. Calculations of spin correlations within an additional approximation added
References in corpus (8)
- Detecting the Kondo screening cloud around a quantum dot
- Kondo and anti-Kondo resonances in transport through nanoscale devices
- Many-body theory of the quantum mirage
- Spectroscopic and magnetic mirages of impurities in nanoscopic systems
- Persistent currents in mesoscopic rings with a quantum dot
- Interaction between Kondo impurities in a quantum corral
- Spectral densities of Kondo impurities in nanoscopic systems
- Line shape in the mirage experiment
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- Screening mechanisms in magnetic nanostructures
- Elastic electron scattering in quantum corrals: The importance of the shape of the adatom potential
- Quantum correlations in nanostructured two-impurity Kondo systems
- Scanning tunneling microscopy of adsorbed molecules on metalic surfaces for nearly localized atomic states
- Kondo temperature when the Fermi level is near a step in the conduction density of states
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