A systematic stability analysis of the renormalisation group flow for the normal-superconductor-normal junction of Luttinger liquid wires
arXiv:0901.0126 · doi:10.1103/PhysRevB.79.155416
Abstract
We study the renormalization group flows of the two terminal conductance of a superconducting junction of two Luttinger liquid wires. We compute the power laws associated with the renormalization group flow around the various fixed points of this system using the generators of the SU(4) group to generate the appropriate parameterization of a S-matrix representing small deviations from a given fixed point S-matrix (obtained earlier in Phys. Rev. B 77, 155418 (2008)), and we then perform a comprehensive stability analysis. In particular, for the non-trivial fixed point which has intermediate values of transmission, reflection, Andreev reflection and crossed Andreev reflection, we show that there are eleven independent directions in which the system can be perturbed, which are relevant or irrelevant, and five directions which are marginal. We obtain power laws associated with these relevant and irrelevant perturbations. Unlike the case of the two-wire charge-conserving junction, here we show that there are power laws which are non-linear functions of V(0) and V(2k_{F}) (where V(k) represents the Fourier transform of the inter-electron interaction potential at momentum k). We also obtain the power law dependence of linear response conductance on voltage bias or temperature around this fixed point.
Final version to appear in Phys. Rev. B
References in corpus (15)
- Non-Local Correlations in Normal Metal-Superconducting Systems
- Reversing non-local transport through a superconductor by electromagnetic excitations
- Current-current correlations in hybrid superconducting and normal metal multiterminal structures
- Circuit theory of crossed Andreev reflection
- Bosonization and Scale Invariance on Quantum Wires
- Non-local Andreev transport through an interacting quantum dot
- Junctions of three quantum wires for spin 1/2 electrons
- Crossed Andreev reflection at spin-active interfaces
- Non-local Andreev reflection in superconducting quantum dots
- Full counting statistics of crossed Andreev reflection
- Duality between normal and superconducting junctions of multiple quantum wires
- Fermionic renormalization group methods for transport through inhomogeneous Luttinger liquids
- Renormalization group study of transport through a superconducting junction of multiple one-dimensional quantum wires
- Interaction-induced Renormalization of Andreev Reflection
- Spintronics with NSN Junction of one-dimensional quantum wires : A study of Pure Spin Current and Magnetoresistance
Cited by in corpus (7)
- Non-equilibrium Steady States of Quantum Systems on Star Graphs
- Quantum wire junctions breaking time reversal invariance
- Off-critical Luttinger Junctions
- A fermionic approach to tunneling through junctions of multiple quantum wires
- Quantum Wire Network with Magnetic Flux
- Transport across a system with three p-wave superconducting wires: effects of Majorana modes and interactions
- Electron-electron interaction effects on transport through mesoscopic superconducting hybrid junctions