most citedOvercoming limitations on gate fidelity in noisy static exchange-coupled surface qubits

1 citations · 1 across the 5 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall2026

Theory of Electron Spin Resonance Scanning Tunneling Microscopy: The First Decade

Saba Taherpour, Denis Janković, Jose Reina-Galvez +2

Electron spin resonance in scanning tunneling microscopy enabled the study of electronic transitions of magnetic impurities on surfaces at the atomic scale. This ESR-STM technique…

quant-ph2026

Quantum Optimal Control Using MAGICARP: Combining Pontryagin's Maximum Principle and Gradient Ascent

Denis Janković, Jean-Gabriel Hartmann, Paul-Louis Etienney +3

We introduce the MAGICARP algorithm, a numerical optimization method for quantum optimal control problems that combines the structure provided by Pontryagin's Maximum Principle (PM…

quant-ph2026

Probing the Weak-Driving Quantum Speed Limit via Drift-Aware Shooting Methods

Denis Janković, Saba Taherpour, Paul-Louis Etienney +2

A central goal of quantum optimal control is to achieve high-fidelity and low-energy control pulses. When quantum optimal control methods optimize every point of a pulse discretize…

quant-ph2026

Implementation of a shooting technique for quantum optimal control on spin qudits

Paul-Louis Etienney, Denis Janković, Killian Lutz +3

High-fidelity quantum control is a cornerstone of scalable quantum technologies. We introduce a shooting-based optimization framework that generates smooth, experimentally realisti…

quant-ph20261 cited

Overcoming limitations on gate fidelity in noisy static exchange-coupled surface qubits

Hoang-Anh Le, Saba Taherpour, Denis Janković +1

Recent experiments demonstrated that the spin state of individual atoms on surfaces can be quantum-coherently controlled through all-electric electron spin resonance. By constructi…

physics.atom-ph2026

The hyperfine interaction as a probe of the microscopic structure of the atomic nucleus

Denis Janković, Jean-Gabriel Hartmann, Johann Bartel +3

The study of highly charged electronic and muonic hydrogen-like ions, provides an intriguing way to probe the internal structure of their atomic nuclei. In this work, we use nuclea…