activity
20242026
collaborators

6 papers

quant-ph2026

FAlCon: A unified framework for algorithmic control of quantum dot devices

Tyler J. Kovach, Daniel Schug, Zach D. Merino +3

As spin-based quantum systems scale, their setup and control complexity increase sharply. In semiconductor quantum dot (QD) experiments, device-to-device variability, heterogeneous…

cond-mat.mes-hall2026

Single-shot latched readout of a quantum dot qubit using barrier gate pulsing

Sanghyeok Park, Jared Benson, J. Corrigan +4

Latching techniques are widely used to enhance readout of qubits. These methods require precise tuning of multiple tunnel rates, which can be challenging to achieve under realistic…

cond-mat.mes-hall2026

Bootstrapping, autonomous testing, and initialization system for Si/SiGe multi-quantum-dot devices

Tyler J. Kovach, Daniel Schug, M. A. Wolfe +7

Semiconductor quantum dot (QD) devices have become central to advancements in spin-based quantum computing. However, the increasing complexity of modern QD devices makes calibratio…

cond-mat.mes-hall2025

Fast high-fidelity baseband reset of a latched state for quantum dot qubit readout

Piotr Marciniec, M. A. Wolfe, Tyler Kovach +9

A common method for reading out the state of a spin qubit is by latching one logical qubit state, either or , onto a different, metastable charge state. Such…

cs.CV2025

Automation of Quantum Dot Measurement Analysis via Explainable Machine Learning

Daniel Schug, Tyler J. Kovach, M. A. Wolfe +6

The rapid development of quantum dot (QD) devices for quantum computing has necessitated more efficient and automated methods for device characterization and tuning. This work demo…

cond-mat.mes-hall2024

Data needs and challenges for quantum dot devices automation

Justyna P. Zwolak, Jacob M. Taylor, Reed W. Andrews +17

Gate-defined quantum dots are a promising candidate system for realizing scalable, coupled qubit systems and serving as a fundamental building block for quantum computers. However,…