Scaling analysis of Kondo screening cloud in a mesoscopic ring with an embedded quantum dot
arXiv:1012.0128 · doi:10.1103/PhysRevB.83.165310
Abstract
The Kondo effect is theoretically studied in a quantum dot embedded in a mesoscopic ring. The ring is connected to two external leads, which enables the transport measurement. Using the "poor man's" scaling method, we obtain analytical expressions of the Kondo temperature T_K as a function of the Aharonov-Bohm phase ϕby the magnetic flux penetrating the ring. In this Kondo problem, there are two characteristic lengths. One is the screening length of the charge fluctuation, L_c=\hbar v_F/ |ε_0|, where v_F is the Fermi velocity and ε_0 is the energy level in the quantum dot. The other is the screening length of spin fluctuation, i.e., size of Kondo screening cloud, L_K=\hbar v_F/ T_K. We obtain different expressions of T_K(ϕ) for (i) L_c \ll L_K \ll L, (ii) L_c \ll L \ll L_K, and (iii) L \ll L_c \ll L_K, where L is the size of the ring. T_K is markedly modulated by ϕin cases (ii) and (iii), whereas it hardly depends on ϕin case (i). We also derive logarithmic corrections to the conductance at temperature T\gg T_K and an analytical expression of the conductance at T\ll T_K, on the basis of the scaling analysis.
21pages, 10 figures
References in corpus (6)
- Kondo effect in quantum dots coupled to ferromagnetic leads
- Kondo screening cloud in a one dimensional wire: Numerical renormalization group study
- Friedel oscillations and the Kondo screening cloud
- Kondo screening cloud in the single-impurity Anderson model: A density matrix renormalization group study
- The Influence of Interference on the Kondo Effect in a Quantum Dot
- Fermi Liquid Theory for the Persistent Current Past a Side-Coupled Quantum Dot
Cited by in corpus (6)
- How to directly measure a Kondo cloud's length
- Fano-Kondo resonance versus Kondo plateau in an Aharonov-Bohm ring with an embedded quantum dot
- Natural orbitals renormalization group approach to a Kondo singlet
- Interaction effects in Aharonov-Bohm-Kondo Rings
- Conductance of closed and open long Aharonov-Bohm-Kondo rings
- Natural orbitals renormalization group approach to a spin-1/2 impurity interacting with two helical liquids