8 papers · 1 filter
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…
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…
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…
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…
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.…
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…