Training Quantum Dragons
Abstract
The Non-Equilibrium Green's Function (NEGF) is the standard formalism for nano-scale electron transport. By recasting the NEGF scattering problem as a linear system of equations whose solution encodes the transmission and reflection amplitudes, we present the first quantum computerized implementation of NEGF. We apply both the Harrow--Hassidim--Lloyd and Variational Quantum Linear Solver algorithms to compute the transmission coefficient of quantum dragon nanodevices within the single-band tight-binding model. Quantum dragon devices exhibit perfect transmission across the full conducting band regardless of internal disorder. The problem maps onto compact circuits of 3 and 4 total physical qubits for the 2-site and 6-site dragon devices, respectively. A similarity transformation block-diagonalizes the NEGF linear system reducing the Pauli decomposition of the block-encoded matrix. We demonstrate the feasibility of quantum computation by performing ideal and noise-aware simulations and computations on physical IBM quantum processor.
Cite
@article{arxiv.2607.27168,
title = {Training Quantum Dragons},
author = {Muhammad Yusf and Bhola Devkota and Mark A. Novotny and Gautam Rupak},
journal= {arXiv preprint arXiv:2607.27168},
year = {2026}
}
Comments
20 pager, 2 circuits, 17 figures, 2 tables