We report measurements of discrete excitation-induced frequency shifts on the F07→D05 transition of the Eu3+ center in La:Lu:EuCl 3·6D2O resulting from the optical excitation of neighboring Eu3+ ions. Shifts of up to 46.081±0.005 MHz were observed. T
We make the first study the optical energy level structure and interactions of pairs of single rare ...
We analyze the Ce3+-Pr3+:Y2SiO5 emission spectra obtained under selective excitation of the two Ce3+...
Quantum light–matter interfaces connecting stationary qubits to photons will enable optical networks...
This thesis presents a spectroscopic study of the 7F0 ---t5D0 transition of Eu3+ in EuC13 ·6H2 0, ...
In this thesis, crystals of yttrium orthosilicate (Y2SiO5) that are randomly doped with another rare...
We report on the coupling of the emission from a single europium-doped nanocrystal to a fiber-based ...
We identify the physical mechanisms responsible for the optical homogeneous broadening in Eu^(3+):Y_...
Because of their long coherence times, dopant ions have been considered promising candidates for sc...
This thesis is an investigation into implementing quantum computing in stoichiometric rare-earth sys...
This thesis work concerns studies of two rare-earth-ions, praseodymium (Pr3+) and europium (Eu3+), d...
This thesis work contributes to the effort of detecting single rare earth ions doped into crystals, ...
We obtain a low optical inhomogeneous linewidth of 25 MHz in the stoichiometric rare-earth crystal E...
We identify the physical mechanisms responsible for the optical homogeneous broadening in Eu3+:Y2O3 ...
Rare-earth ions doped into a transparent crystal can have optically excited states with coherence ti...
In optically controlled quantum computers it may be favorable to address different qubits using ligh...
We make the first study the optical energy level structure and interactions of pairs of single rare ...
We analyze the Ce3+-Pr3+:Y2SiO5 emission spectra obtained under selective excitation of the two Ce3+...
Quantum light–matter interfaces connecting stationary qubits to photons will enable optical networks...
This thesis presents a spectroscopic study of the 7F0 ---t5D0 transition of Eu3+ in EuC13 ·6H2 0, ...
In this thesis, crystals of yttrium orthosilicate (Y2SiO5) that are randomly doped with another rare...
We report on the coupling of the emission from a single europium-doped nanocrystal to a fiber-based ...
We identify the physical mechanisms responsible for the optical homogeneous broadening in Eu^(3+):Y_...
Because of their long coherence times, dopant ions have been considered promising candidates for sc...
This thesis is an investigation into implementing quantum computing in stoichiometric rare-earth sys...
This thesis work concerns studies of two rare-earth-ions, praseodymium (Pr3+) and europium (Eu3+), d...
This thesis work contributes to the effort of detecting single rare earth ions doped into crystals, ...
We obtain a low optical inhomogeneous linewidth of 25 MHz in the stoichiometric rare-earth crystal E...
We identify the physical mechanisms responsible for the optical homogeneous broadening in Eu3+:Y2O3 ...
Rare-earth ions doped into a transparent crystal can have optically excited states with coherence ti...
In optically controlled quantum computers it may be favorable to address different qubits using ligh...
We make the first study the optical energy level structure and interactions of pairs of single rare ...
We analyze the Ce3+-Pr3+:Y2SiO5 emission spectra obtained under selective excitation of the two Ce3+...
Quantum light–matter interfaces connecting stationary qubits to photons will enable optical networks...