activity
20222026
most citedElectron-spin spectral diffusion in an erbium doped crystal at millikelvin temperatures

2 citations · 4 across the 7 of their papers we have counts for

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quant-ph2026

Precision hyperfine spectroscopy of an individual nuclear-spin-9/2

J. Travesedo, Z. W. Huang, L. Mykolyshyn +12

Single-spin magnetic resonance spectroscopy promises to yield structural and chemical information at the level of individual atoms or molecules, in a non-invasive way. Here, we use…

quant-ph20242 cited

Individual solid-state nuclear spin qubits with coherence exceeding seconds

James O'Sullivan, Jaime Travesedo, Louis Pallegoix +14

The ability to coherently control and read out qubits with long coherence times in a scalable system is a crucial requirement for any quantum processor. Nuclear spins in the solid…

quant-ph2024

All-microwave spectroscopy and polarization of individual nuclear spins in a solid

J. Travesedo, J. O'Sullivan, L. Pallegoix +10

We report magnetic resonance spectroscopy measurements of individual nuclear spins in a crystal coupled to a neighbouring paramagnetic center, detected using microwave fluorescence…

quant-ph2024

Characterization of the spin and crystal field Hamiltonian of erbium dopants in silicon

Adrian Holzäpfel, Stephan Rinner, Kilian Sandholzer +3

The integration of coherent emitters into low-loss photonic circuits is a key technology for quantum networking. In this context, nanophotonic silicon devices implanted with erbium…

quant-ph2024

Month-long-lifetime microwave spectral holes in an erbium-doped scheelite crystal at millikelvin temperature

Zhiren Wang, Sen Lin, Marianne Le Dantec +9

Rare-earth-ion (REI) ensembles in crystals have remarkable optical and spin properties characterized by narrow homogeneous linewidths relative to the inhomogeneous ensemble broaden…

quant-ph2024

Opto-RF transduction in Er:CaWO

Thierry Chanelière, Rémi Dardaillon, Pierre Lemonde +5

We use an erbium doped CaWO crystal as a resonant transducer between the RF and optical domains at 12 GHz and 1532 nm respectively. We employ a RF resonator to enhance the spin…