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quant-ph2026

Quantum Transport in Disordered Spin Networks: Emergent Timescales and Competing Pathways

Roi Nevo, Brett Min, Maggie Lawrence +2

Quantum transport in disordered systems poses intriguing fundamental questions about the interplay of disorder, interactions, and decoherence, with important implications for nanos…

quant-ph2026

Signatures of Spin Coherence in Chiral Coupled Quantum Dots

Hanna T. Fridman, Rotem Malkinson, Amir Hen +3

Chiral-induced spin selectivity (CISS) enables spin selectivity of charge carriers in chiral molecular systems without magnetic materials. While spin selectivity has been widely in…

quant-ph2025

Highly resilient, error-protected quantum gates in a solid-state quantum network node

E. Poem, M. I. Cohen, S. Blum +8

High-fidelity quantum gates are a cornerstone of any quantum computing and communications architecture. Realizing such control in the presence of realistic errors at the level requ…

quant-ph2025

Quantum Co-Magnetometer Using Diamond Nitrogen-Vacancy Centers and Rubidium Cells

Ittai Shalev, Kfir Levi, Rotem Malkinson +3

Recent advances in chip scale magnetic quantum sensing have produced platforms that pair unprecedented sensitivity with extreme miniaturization. Here, we demonstrate a hybrid quant…

quant-ph2025

Machine-learning based high-bandwidth magnetic sensing

Galya Haim, Stefano Martina, John Howell +2

Recent years have seen significant growth of quantum technologies, and specifically quantum sensing, both in terms of the capabilities of advanced platforms and their applications.…

quant-ph2025

Compressed sensing enabled high-bandwidth and large dynamic range magnetic sensing

Galya Haim, Chris Mullarkey, John Howell +1

Electron Spin Resonance (ESR) is a widely common method in the field of quantum sensing. Specifically with the Nitrogen-Vacancy (NV) center in diamond, used for sensing magnetic an…