We propose and analyze a setup to achieve strong coupling between a single trapped atom and a mechanical oscillator. The interaction between the motion of the atom and the mechanical oscillator is mediated by a quantized light field in a laser driven high-finesse cavity. In particular, we show that high fidelity transfer of quantum states between the atom and the mechanical oscillator is in reach for existing or near future experimental parameters. Our setup provides the basic toolbox from atomic physics for coherent manipulation, preparation, and measurement of micromechanical and nanomechanical oscillators
An exciting scientific goal, common to many fields of research, is the development of ever-larger ph...
Cavity-enhanced radiation-pressure coupling between optical and mechanical degrees of freedom allows...
We propose and investigate a hybrid optomechanical system consisting of a micro-mechanical oscillato...
We propose and analyze a setup to achieve strong coupling between a single trapped atom and a mechan...
We propose and analyze a setup to achieve strong coupling between a single trapped atom and a mechan...
In a recent publication [ K. Hammerer, M. Wallquist, C. Genes, M. Ludwig, F. Marquardt, P. Treutlein...
We investigate two different coupling schemes between a nano-scale mechanical resonator and one-elec...
Optical laser fields have been widely used to achieve quantum control over the motional and internal...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
Engineering strong interactions between quantum systems is essential for many phenomena of quantum p...
In this article we discuss and compare different ways to engineer an interface between ultracold ato...
We propose and investigate a hybrid optomechanical system consisting of a micro-mechanical oscillato...
In a recent publication [K. Hammerer, M. Wallquist, C. Genes, M. Ludwig, F. Marquardt, P. Treutlein,...
We demonstrate an optomechanical microresonator in which optical and mechanical degrees of freedom e...
We give a theoretical description of a coherently driven optomechanical system with a single added p...
An exciting scientific goal, common to many fields of research, is the development of ever-larger ph...
Cavity-enhanced radiation-pressure coupling between optical and mechanical degrees of freedom allows...
We propose and investigate a hybrid optomechanical system consisting of a micro-mechanical oscillato...
We propose and analyze a setup to achieve strong coupling between a single trapped atom and a mechan...
We propose and analyze a setup to achieve strong coupling between a single trapped atom and a mechan...
In a recent publication [ K. Hammerer, M. Wallquist, C. Genes, M. Ludwig, F. Marquardt, P. Treutlein...
We investigate two different coupling schemes between a nano-scale mechanical resonator and one-elec...
Optical laser fields have been widely used to achieve quantum control over the motional and internal...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
Engineering strong interactions between quantum systems is essential for many phenomena of quantum p...
In this article we discuss and compare different ways to engineer an interface between ultracold ato...
We propose and investigate a hybrid optomechanical system consisting of a micro-mechanical oscillato...
In a recent publication [K. Hammerer, M. Wallquist, C. Genes, M. Ludwig, F. Marquardt, P. Treutlein,...
We demonstrate an optomechanical microresonator in which optical and mechanical degrees of freedom e...
We give a theoretical description of a coherently driven optomechanical system with a single added p...
An exciting scientific goal, common to many fields of research, is the development of ever-larger ph...
Cavity-enhanced radiation-pressure coupling between optical and mechanical degrees of freedom allows...
We propose and investigate a hybrid optomechanical system consisting of a micro-mechanical oscillato...