activity
20192021
most citedDouble-heterodyne probing for ultra-stable laser based on spectral hole burning in a rare-earth doped crystal

17 citations · 41 across the 4 of their papers we have counts for

collaborators

5 papers

physics.atom-ph20218 cited

Precision measurements of electric-field-induced frequency displacements of an ultranarrow optical transition in ions in a solid

S. Zhang, N. Lučić, N. Galland +5

We report a series of measurements of the effect of an electric field on the frequency of the ultranarrow linewidth optical transition of

cond-mat.mtrl-sci202012 cited

Inhomogeneous response of an ion ensemble from mechanical stress

S. Zhang, N. Galland, N. Lučić +6

Material strain has recently received growing attention as a complementary resource to control the energy levels of quantum emitters embedded inside a solid-state environment. Some…

physics.app-ph20204 cited

Microscale crystalline rare-earth doped resonators for strain-coupled optomechanics

J. F. Motte, N. Galland, J. Debray +7

Rare-earth ion doped crystals for hybrid quantum technologies is an area of growing interest in the solid-state physics community. We have earlier theoretically proposed a hybrid s…

physics.optics202017 cited

Double-heterodyne probing for ultra-stable laser based on spectral hole burning in a rare-earth doped crystal

N. Galland, N. Lucic, S. Zhang +7

We present an experimental technique for realizing a specific absorption spectral pattern in a rare-earth-doped crystal at cryogenic temperatures. This pattern is subsequently prob…

cond-mat.mtrl-sci2019

Mechanical tunability of an ultra-narrow spectral feature with uniaxial stress

N. Galland, N. Lucic, B. Fang +6

Rare-earth doped crystals have numerous applications ranging from frequency metrology to quantum information processing. To fully benefit from their exceptional coherence propertie…