An ever increasing effort has been devoted over the years to develop techniques for manipulating light in optical devices. Electromagnetic induced transparency (EIT) is one of these techniques that has recently led to an astonishing control on light wave propagation in ultracold clouds of alkali atoms. EIT may be employed to realize a photonic band gaps that are controllable through the parameters of an external standing light wave pattern [1]. Such gaseous approaches are not however suitable for on-chip implementation. Early work on control over photonic band-gap comprises, e.g., structures built from the periodic complex susceptibility of quantum well excitons whose optical properties can be dynamically modified through the Stark effect. ...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Inhomogeneously broadened optical transitions in nitrogen-vacancy color centers in diamond and Pr(3+...
An efficient atom-photon-interface is a key requirement for the integration of solid-state emitters ...
Inhomogeneously broadened optical transitions of nitrogen-vacancy centers in diamond may be employed...
In this chapter, we give a brief review of our recent research works on photonic bandgaps induced by...
We describe how a quantum non-demolition device bascd on electromagnetically-induced transparency in...
Photonic technologies play key roles in twenty-first century technologies. In addition to their trad...
Thesis (Ph.D.)--University of Washington, 2022Solid-state defect qubits are emerging as a promising ...
With the immense progress demonstrated in recent years in the field of quantum communication, the us...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
This thesis describes a series of experiments on the control of the optical properties of the nitrog...
The nitrogen-vacancy (N-V) defect in ultra-pure diamond shows great promise for the implementation o...
To grasp a greater understanding and explore the various quantum technologies, it is imperative to e...
Thesis (Ph.D.)--University of Washington, 2014The nitrogen-vacancy (NV) defect center in diamond is ...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Inhomogeneously broadened optical transitions in nitrogen-vacancy color centers in diamond and Pr(3+...
An efficient atom-photon-interface is a key requirement for the integration of solid-state emitters ...
Inhomogeneously broadened optical transitions of nitrogen-vacancy centers in diamond may be employed...
In this chapter, we give a brief review of our recent research works on photonic bandgaps induced by...
We describe how a quantum non-demolition device bascd on electromagnetically-induced transparency in...
Photonic technologies play key roles in twenty-first century technologies. In addition to their trad...
Thesis (Ph.D.)--University of Washington, 2022Solid-state defect qubits are emerging as a promising ...
With the immense progress demonstrated in recent years in the field of quantum communication, the us...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
This thesis describes a series of experiments on the control of the optical properties of the nitrog...
The nitrogen-vacancy (N-V) defect in ultra-pure diamond shows great promise for the implementation o...
To grasp a greater understanding and explore the various quantum technologies, it is imperative to e...
Thesis (Ph.D.)--University of Washington, 2014The nitrogen-vacancy (NV) defect center in diamond is ...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Inhomogeneously broadened optical transitions in nitrogen-vacancy color centers in diamond and Pr(3+...
An efficient atom-photon-interface is a key requirement for the integration of solid-state emitters ...