Unique spectroscopic properties of isolated rare earth ions in solids offer optical linewidths rivaling those of trapped single atoms and enable a variety of recent applications. We design rare-earth-doped crystals, ceramics, and fibers with persistent or transient “spectral hole” recording properties for applications including high-bandwidth optical signal processing where light and our solids replace the high-bandwidth portion of the electronics; quantum cryptography and information science including the goal of storage and recall of single photons; and medical imaging technology for the 700-900 nm therapeutic window. Ease of optically manipulating rare-earth ions in solids enables capturing complex spectral information in 105 to 108 freq...
Homogeneous linewidths below 10 kHz are reported for the first time in high-quality Eu3+ doped Y 2O3...
Quantum light–matter interfaces connecting stationary qubits to photons will enable optical networks...
The purpose of this document is to present the work that has been done in order to use spectral hole...
When doped into solid state transparent crystals, rare-earth ions can have optically excited states ...
Spatial-spectral holography using spectral hole burning materials is a powerful technique for perfor...
Rare-earth-ion doped materials are studied for a quantum information protocol, controlled reversible...
This paper is devoted to optics in rare earth ion doped crystal at low temperature. In cryogenic con...
The main aim of the present thesis is to demonstrate the efficient quantum memories for light employ...
This thesis describes a number of coherent processes, such as quantum information processing, superr...
In this thesis, crystals of yttrium orthosilicate (Y2SiO5) that are randomly doped with another rare...
Rare-earth-ion doped crystals are an interesting system for quantum computing investigations due to ...
We obtain a low optical inhomogeneous linewidth of 25 MHz in the stoichiometric rare-earth crystal E...
The subgigahertz spectral bandwidth of the lowest energy 1.5mum Er3+ I15/24--\u3eI13/24 optical tran...
This thesis describes experiments aimed at developing a key component in applications such as quantu...
The present work addresses critical issues in constructing high suppression, narrowband spectral fil...
Homogeneous linewidths below 10 kHz are reported for the first time in high-quality Eu3+ doped Y 2O3...
Quantum light–matter interfaces connecting stationary qubits to photons will enable optical networks...
The purpose of this document is to present the work that has been done in order to use spectral hole...
When doped into solid state transparent crystals, rare-earth ions can have optically excited states ...
Spatial-spectral holography using spectral hole burning materials is a powerful technique for perfor...
Rare-earth-ion doped materials are studied for a quantum information protocol, controlled reversible...
This paper is devoted to optics in rare earth ion doped crystal at low temperature. In cryogenic con...
The main aim of the present thesis is to demonstrate the efficient quantum memories for light employ...
This thesis describes a number of coherent processes, such as quantum information processing, superr...
In this thesis, crystals of yttrium orthosilicate (Y2SiO5) that are randomly doped with another rare...
Rare-earth-ion doped crystals are an interesting system for quantum computing investigations due to ...
We obtain a low optical inhomogeneous linewidth of 25 MHz in the stoichiometric rare-earth crystal E...
The subgigahertz spectral bandwidth of the lowest energy 1.5mum Er3+ I15/24--\u3eI13/24 optical tran...
This thesis describes experiments aimed at developing a key component in applications such as quantu...
The present work addresses critical issues in constructing high suppression, narrowband spectral fil...
Homogeneous linewidths below 10 kHz are reported for the first time in high-quality Eu3+ doped Y 2O3...
Quantum light–matter interfaces connecting stationary qubits to photons will enable optical networks...
The purpose of this document is to present the work that has been done in order to use spectral hole...