Efficient Numerical Self-consistent Mean-field Approach for Fermionic Many-body Systems by Polynomial Expansion on Spectral Density
arXiv:1105.4939 · doi:10.1143/JPSJ.81.024710
Abstract
We propose an efficient numerical algorithm to solve Bogoliubov de Gennes equations self-consistently for inhomogeneous superconducting systems with a reformulated polynomial expansion scheme. This proposed method is applied to typical issues such as a vortex under randomly distributed impurities and a normal conducting junction sandwiched between superconductors. With various technical remarks, we show that its efficiency becomes remarkable in large-scale parallel performance.
16 pages, 5 figures (published version)
References in corpus (6)
- The Kernel Polynomial Method
- Chebyshev-BdG: an efficient numerical approach to inhomogeneous superconductivity
- Pseudogap and Fermi-arc Evolution in the Phase-fluctuation Scenario
- Direct Numerical Demonstration of Sign-preserving Quasiparticle Interference via Impurity inside Vortex Core in Unconventional Superconductors
- Proximity induced pseudogap in mesoscopic superconductor/normal-metal bilayers
- Synchronized Andreev Transmission in Chains of SNS Junctions
Cited by in corpus (32)
- dc Josephson Effect in Altermagnets
- Imaging Josephson Vortices on the Surface Superconductor Si(111)-(root7xroot3)-In using a Scanning Tunneling Microscope
- Robust parity-mixed superconductivity in disordered monolayer transition metal dichalcogenides
- Self-Learning Monte Carlo Method: Continuous-Time Algorithm
- Spin-polarized Majorana Bound States inside a Vortex Core in Topological Superconductors
- N-independent Localized Krylov Bogoliubov-de Gennes Method: Ultra-fast Numerical Approach to Large-scale Inhomogeneous Superconductors
- Pair-density-wave superconductivity of faces, edges and vertices in systems with imbalanced fermions
- Numerical construction of a low-energy effective Hamiltonian in a self-consistent Bogoliubov-de Gennes approach of superconductivity
- Manifestation of chirality in the vortex lattice in a two-dimensional topological superconductor
- GPU-based acceleration of free energy calculations in solid state physics
- Boundary effects in two-band superconductors
- Robustness of Quasiparticle Interference Test for Sign-changing Gaps in Multiband Superconductors
- Origin of Topological Surface Superconductivity in FeSeTe
- Vortex spectroscopy in the vortex glass: A real-space numerical approach
- Self-consistent-field ensembles of disordered Hamiltonians: Efficient solver and application to superconducting films
- Demonstration of skyrmions in three-band superconductors by self-consistent solutions to a Bogoliubov-de Gennes model
- Self-consistent study of Abelian and non-Abelian order in a two-dimensional topological superconductor
- Direct Numerical Demonstration of Sign-preserving Quasiparticle Interference via Impurity inside Vortex Core in Unconventional Superconductors
- Efficient numerical method for evaluating normal and anomalous time-domain equilibrium Green's functions in inhomogeneous systems
- Probe-type of superconductivity by impurity in materials with short coherence length: the s-wave and -wave phases study
- Reduced-Shifted Conjugate-Gradient Method for a Green's Function: Efficient Numerical Approach in a Nano-structured Superconductor
- Theory of Mixed-State Effect on Quasiparticle Interference in Iron-based Superconductors
- Emergence of Larkin-Ovchinnikov-type superconducting state in a voltage-driven superconductor
- Optically active Higgs and Leggett modes in multiband pair-density-wave superconductors with Lifshitz invariant
- Correlated states in super-moiré materials with a kernel polynomial quantics tensor cross interpolation algorithm
- Spontaneous edge corner currents in superconductors and time reversal symmetry breaking surface states
- Hybrid kernel polynomial method
- Surface states around a vortex in topological superconductors: Intersection of a surface and a vortex
- Temperature dependent energy gap for Yu-Shiba-Rusinov states at the quantum phase transition
- The BaKFeAs superconducting four-gap temperature evolution: a multi-band Chebyshev-BdG approach
- Numerical solution of large scale Hartree-Fock-Bogoliubov equations
- Fast-update in self-learning algorithm for continuous-time quantum Monte Carlo