A library to locate exceptional points and to reconstruct eigenvalues loci
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Updated
Mar 6, 2026 - Python
A library to locate exceptional points and to reconstruct eigenvalues loci
This repository contains the code developed to accompany the Letter: Non-Hermitian Fermi-Dirac Distribution in Persistent Current Transport.
Julia implementation of non-Hermitian NRG
This repository provide the codes that support the results in our paper: https://link.aps.org/doi/10.1103/q8p7-k7ms
Official implementation of Non-Hermitian Spectral Steering (NHSS) quantum paradigm using IBM Dynamic Circuits.
Dynamic evolution of a topological photonic laser system, for the non-reciprocal SSH and Diamond lattice models. Nonlinear saturable gain and loss are integrated into the models such that phase diagrams are generated to display different lasing-behaviours and topological phenomena.
Computational condensed matter physics framework for studying non-Hermitian topology, PT symmetry breaking, exceptional points, skin effects, winding topology, and complex spectra in SSH-type lattice Hamiltonians.
Computational condensed matter physics framework for studying topological phases, Berry curvature, Chern numbers, ribbon edge states, quantum transport, and non-Hermitian extensions of the Haldane model using tight-binding Hamiltonians and Green’s function methods.
Parallelized non-Hermitian superlattice model on SLURM (HPC + physics)
Locate an EP2 for real-valued parameters.
Indivisible stochastic processes for non-Hermitian and higher-derivative quantum systems: detailed balance, broken PT symmetry, and the explosion of ghosts (paper + reproducible scripts)
🧬 Explore NHSS-Quantum-Computing, a novel approach using Non-Hermitian dynamics for quantum computation with Exceptional Points as key resources.
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