We describe theoretically a setup in which a tapered optical nanofiber is introduced into an optical lattice potential for cold atoms. First, we consider the disturbance to the geometry of the lattice potential due to scattering of the lattice lasers from the dielectric fiber surface and show that the resulting distortion to the lattice can be minimized by placing the fiber at an appropriate position in the lattice. We then calculate the modifications of the local potentials that are achievable by transmitting off-resonant light through the fiber. The availability of such a technique holds the potential to deterministically create and address small well-defined samples of atoms in the evanescent field of the tapered nanofiber
Ultra-cold atoms systems used as quantum simulators offer an alternative way to simulate many-body s...
The strong evanescent field around ultra-thin unclad optical fibers bears a high potential for detec...
We study the strong coupling between photons and atoms that can be achieved in an optical nanofiber ...
We describe theoretically a setup in which a tapered optical nanofiber is introduced into an optical...
Optical nanofibres (ONFs) are very thin optical waveguides with sub-wavelength diameters. ONFs have ...
Abstract. Laser trapping and interfacing of laser-cooled atoms in an optical fiber network is an imp...
We describe and demonstrate a method to deterministically trap single atoms near nanoscale solid-sta...
We built a new experiment using cold atoms interacting with the light guided by an optical nanofiber...
In this thesis, I present the realization of a fiber-optical interface using optically trapped cesiu...
New effects can arise in quantum physics when there is strong coupling, ei-ther between atoms and li...
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...
We experimentally demonstrate efficient coupling of atomic fluorescence to the guided mode of a subw...
Laser trapping and interfacing of laser-cooled atoms in an optical fiber network is an important too...
Reversible light-matter interfaces are crucial elements in quantum optics and quantum information ne...
Ultra-cold atoms systems used as quantum simulators offer an alternative way to simulate many-body s...
The strong evanescent field around ultra-thin unclad optical fibers bears a high potential for detec...
We study the strong coupling between photons and atoms that can be achieved in an optical nanofiber ...
We describe theoretically a setup in which a tapered optical nanofiber is introduced into an optical...
Optical nanofibres (ONFs) are very thin optical waveguides with sub-wavelength diameters. ONFs have ...
Abstract. Laser trapping and interfacing of laser-cooled atoms in an optical fiber network is an imp...
We describe and demonstrate a method to deterministically trap single atoms near nanoscale solid-sta...
We built a new experiment using cold atoms interacting with the light guided by an optical nanofiber...
In this thesis, I present the realization of a fiber-optical interface using optically trapped cesiu...
New effects can arise in quantum physics when there is strong coupling, ei-ther between atoms and li...
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...
We experimentally demonstrate efficient coupling of atomic fluorescence to the guided mode of a subw...
Laser trapping and interfacing of laser-cooled atoms in an optical fiber network is an important too...
Reversible light-matter interfaces are crucial elements in quantum optics and quantum information ne...
Ultra-cold atoms systems used as quantum simulators offer an alternative way to simulate many-body s...
The strong evanescent field around ultra-thin unclad optical fibers bears a high potential for detec...
We study the strong coupling between photons and atoms that can be achieved in an optical nanofiber ...