The precision of matter-wave sensors benefits from interrogating large-particle-number atomic ensembles at high cycle rates. Quantum-degenerate gases with their low effective temperatures allow for constraining systematic errors towards highest accuracy, but their production by evaporative cooling is costly with regard to both atom number and cycle rate. In this work, we report on the creation of cold matter-waves using a crossed optical dipole trap and shaping them by means of an all-optical matter-wave lens. We demonstrate the trade off between lowering the residual kinetic energy and increasing the atom number by reducing the duration of evaporative cooling and estimate the corresponding performance gain in matter-wave sensors. Our met...
Interferometric measurements with matter waves are established techniques for sensitive gravimetry, ...
Rapidly scanning magnetic and optical dipole traps have been widely utilized to form time-averaged p...
International audienceIn contrast to light, matter-wave optics of quantum gases deals with interacti...
The precision of matter-wave sensors benefits from interrogating large-particle-number atomic ensemb...
International audienceThe stability of matter-wave sensors benefits from interrogating large-particl...
International audienceThe stability of matter-wave sensors benefits from interrogating large-particl...
International audienceThe stability of matter-wave sensors benefits from interrogating large-particl...
International audienceThe stability of matter-wave sensors benefits from interrogating large-particl...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
In contrast to light, matter-wave optics of quantum gases deals with interactions even in free space...
Interferometric measurements with matter waves are established techniques for sensitive gravimetry, ...
We demonstrate runaway evaporative cooling directly with a tightly confining optical-dipole trap and...
Mixtures of ultracold quantum gases are at the heart of high-precision quantum tests of the weak equ...
14 pagesWe suggest different simple schemes to efficiently load and evaporate a ''dimple'' crossed d...
Interferometric measurements with matter waves are established techniques for sensitive gravimetry, ...
Rapidly scanning magnetic and optical dipole traps have been widely utilized to form time-averaged p...
International audienceIn contrast to light, matter-wave optics of quantum gases deals with interacti...
The precision of matter-wave sensors benefits from interrogating large-particle-number atomic ensemb...
International audienceThe stability of matter-wave sensors benefits from interrogating large-particl...
International audienceThe stability of matter-wave sensors benefits from interrogating large-particl...
International audienceThe stability of matter-wave sensors benefits from interrogating large-particl...
International audienceThe stability of matter-wave sensors benefits from interrogating large-particl...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
In contrast to light, matter-wave optics of quantum gases deals with interactions even in free space...
Interferometric measurements with matter waves are established techniques for sensitive gravimetry, ...
We demonstrate runaway evaporative cooling directly with a tightly confining optical-dipole trap and...
Mixtures of ultracold quantum gases are at the heart of high-precision quantum tests of the weak equ...
14 pagesWe suggest different simple schemes to efficiently load and evaporate a ''dimple'' crossed d...
Interferometric measurements with matter waves are established techniques for sensitive gravimetry, ...
Rapidly scanning magnetic and optical dipole traps have been widely utilized to form time-averaged p...
International audienceIn contrast to light, matter-wave optics of quantum gases deals with interacti...