We present experiments with Bose-Einstein condensates on a combined atom chip. The combined structure consists of a large-scale "carrier chip" and smaller "atom-optics chips," containing micron-sized elements. This allows us to work with condensates very close to chip surfaces without suffering from fragmentation or losses due to thermally driven spin flips. Precise three-dimensional positioning and transport with constant trap frequencies are described. Bose-Einstein condensates were manipulated with submicron accuracy above atom-optics chips. As an application of atom chips, a direction sensitive magnetic-field microscope is demonstrated
In atom chip experiments, cold alkali atoms can be trapped at distances as close as a few tens of mi...
We describe a novel method of fabricating atom chips that are well suited to the production and mani...
Ultracold atoms can be manipulated using microfabricated devices known as atom chips. These have sig...
We present experiments with Bose-Einstein condensates on a combined atom chip. The combined structur...
Miniaturized potentials near the surface of atom chips can be used as flexible and versatile tools f...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2003.Includes bibliographi...
An atom Michelson interferometer is implemented on an “atom chip.” The chip uses lithographically pa...
In the presented work, we report about the successful creation of a Rubidium Bose-Einstein condensat...
Following the advent of laser cooling and trapping techniques in the 1980s, a new exciting area of r...
The experiment described in this report is a part of the evolution in research in atomic physics tow...
Atom chips are an excellent tool for studying ultracold degenerate quantum gases, due to the high de...
Atoms can be trapped and guided using nano-fabricated wires on surfaces, achieving the scales requir...
We describe the production of BECs on a new type of atom chip based on silver foil. Our atom chip is...
ii iThis work was carried out under the supervision of Prof. Ron Folman. In the Department of Physic...
We describe a novel method of fabricating atom chips that are well suited to the production and mani...
In atom chip experiments, cold alkali atoms can be trapped at distances as close as a few tens of mi...
We describe a novel method of fabricating atom chips that are well suited to the production and mani...
Ultracold atoms can be manipulated using microfabricated devices known as atom chips. These have sig...
We present experiments with Bose-Einstein condensates on a combined atom chip. The combined structur...
Miniaturized potentials near the surface of atom chips can be used as flexible and versatile tools f...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2003.Includes bibliographi...
An atom Michelson interferometer is implemented on an “atom chip.” The chip uses lithographically pa...
In the presented work, we report about the successful creation of a Rubidium Bose-Einstein condensat...
Following the advent of laser cooling and trapping techniques in the 1980s, a new exciting area of r...
The experiment described in this report is a part of the evolution in research in atomic physics tow...
Atom chips are an excellent tool for studying ultracold degenerate quantum gases, due to the high de...
Atoms can be trapped and guided using nano-fabricated wires on surfaces, achieving the scales requir...
We describe the production of BECs on a new type of atom chip based on silver foil. Our atom chip is...
ii iThis work was carried out under the supervision of Prof. Ron Folman. In the Department of Physic...
We describe a novel method of fabricating atom chips that are well suited to the production and mani...
In atom chip experiments, cold alkali atoms can be trapped at distances as close as a few tens of mi...
We describe a novel method of fabricating atom chips that are well suited to the production and mani...
Ultracold atoms can be manipulated using microfabricated devices known as atom chips. These have sig...