The strong evanescent field around ultra-thin unclad optical fibers bears a high potential for detecting, trapping, and manipulating cold atoms. Introducing such a fiber into a cold atom cloud, we investigate the interaction of a small number of cold Caesium atoms with the guided fiber mode and with the fiber surface. Using high resolution spectroscopy, we observe and analyze light-induced dipole forces, van der Waals interaction, and a significant enhancement of the spontaneous emission rate of the atoms. The latter can be assigned to the modification of the vacuum modes by the fiber
We demonstrate how optical nanofibers can be used to manipulate and probe single-atom fluorescence. ...
We study spontaneous emission from a rubidium atom into the fundamental and higher-order modes of a ...
New effects can arise in quantum physics when there is strong coupling, ei-ther between atoms and li...
Optical nanofibres (ONFs) are very thin optical waveguides with sub-wavelength diameters. ONFs have ...
We demonstrate a fiber-optical switch that operates with a few hundred photons per switching pulse. ...
This project focuses on a novel experimental method for interfacing cold atoms with optical waveguid...
In this thesis, I present the realization of a fiber-optical interface using optically trapped cesiu...
In this thesis, I present the realization of a fiber-optical interface using optically trapped cesiu...
Optical near-fields are generated when light passes through components with wavelength, or subwavele...
We study the force of light on a two-level atom near an ultrathin optical fiber using the mode funct...
This project focuses on a novel experimental method for interfacing cold atoms with optical waveguid...
We describe theoretically a setup in which a tapered optical nanofiber is introduced into an optical...
We present measurements of the transmission spectra of 87Rb atoms at 780 nm in the vicinity of a nan...
We built a new experiment using cold atoms interacting with the light guided by an optical nanofiber...
A Viewpoint on: Efficient All-Optical Switching Using Slow Light within a Hollow Fiber M. Bajcsy, S....
We demonstrate how optical nanofibers can be used to manipulate and probe single-atom fluorescence. ...
We study spontaneous emission from a rubidium atom into the fundamental and higher-order modes of a ...
New effects can arise in quantum physics when there is strong coupling, ei-ther between atoms and li...
Optical nanofibres (ONFs) are very thin optical waveguides with sub-wavelength diameters. ONFs have ...
We demonstrate a fiber-optical switch that operates with a few hundred photons per switching pulse. ...
This project focuses on a novel experimental method for interfacing cold atoms with optical waveguid...
In this thesis, I present the realization of a fiber-optical interface using optically trapped cesiu...
In this thesis, I present the realization of a fiber-optical interface using optically trapped cesiu...
Optical near-fields are generated when light passes through components with wavelength, or subwavele...
We study the force of light on a two-level atom near an ultrathin optical fiber using the mode funct...
This project focuses on a novel experimental method for interfacing cold atoms with optical waveguid...
We describe theoretically a setup in which a tapered optical nanofiber is introduced into an optical...
We present measurements of the transmission spectra of 87Rb atoms at 780 nm in the vicinity of a nan...
We built a new experiment using cold atoms interacting with the light guided by an optical nanofiber...
A Viewpoint on: Efficient All-Optical Switching Using Slow Light within a Hollow Fiber M. Bajcsy, S....
We demonstrate how optical nanofibers can be used to manipulate and probe single-atom fluorescence. ...
We study spontaneous emission from a rubidium atom into the fundamental and higher-order modes of a ...
New effects can arise in quantum physics when there is strong coupling, ei-ther between atoms and li...