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20232026
most citedImproved Electron-Nuclear Quantum Gates for Spin Sensing and Control

6 citations · 10 across the 5 of their papers we have counts for

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quant-ph2026

Unconditionally teleported quantum gates between remote solid-state qubit registers

Mariagrazia Iuliano, Nicolas Demetriou, H. Benjamin van Ommen +3

Quantum networks connecting quantum processing nodes via photonic links enable distributed and modular quantum computation. In this framework, quantum gates between remote qubits c…

quant-ph20251 cited

Quantum-network nodes with real-time noise mitigation using spectator qubits

S. J. H. Loenen, Y. Wang, N. Demetriou +2

Quantum networks might enable quantum communication and distributed quantum computation. Solid-state defects are promising platforms for such networks, because they provide an opti…

quant-ph20246 cited

Improved Electron-Nuclear Quantum Gates for Spin Sensing and Control

H. B. van Ommen, G. L. van de Stolpe, N. Demetriou +7

The ability to sense and control nuclear spins near solid-state defects might enable a range of quantum technologies. Dynamically Decoupled Radio-Frequency (DDRF) control offers a…

quant-ph20242 cited

Design and demonstration of an operating system for executing applications on quantum network nodes

Carlo Delle Donne, Mariagrazia Iuliano, Bart van der Vecht +22

The goal of future quantum networks is to enable new internet applications that are impossible to achieve using solely classical communication. Up to now, demonstrations of quantum…

quant-ph20231 cited

Control of individual electron-spin pairs in an electron-spin bath

H. P. Bartling, N. Demetriou, N. C. F. Zutt +7

The decoherence of a central electron spin due to the dynamics of a coupled electron-spin bath is a core problem in solid-state spin physics. Ensemble experiments have studied the…