Quantum technologies are on the rise to change our daily life and thinking triggered by enormous advances in quantum enhanced communication, computation, metrology, and sensing. For many of these fields an operation in space will be essential to improve the relevance and significance of future applications. In particular, space-based quantum sensing will enable Earth observation missions, studies of relativistic geodesy, and tests of fundamental physical concepts with outstanding precision. The basis for these prospects is the realization of ultracold quantum gases in a microgravity environment. Ultracold quantum gases like Bose-Einstein condensates (BECs) offer an excellent control over their external as well as internal degrees of freedom...
Bose-Einstein condensates (BECs) in free fall constitute a promising source for space-borne interfer...
Quantum sensors based on light pulse atom interferometers allow for measurements of inertial and ele...
We present projects for future space missions using new quantum devices based on ultracold atoms. Th...
Matter-wave interferometers based on Bose-Einstein condensates are exquisite tools for precision mea...
Quantum sensors utilising atom interferometry offer new perspectives for future gravity missions. Th...
International audienceAbstract Ultracold quantum gases are ideal sources for high-precision space-bo...
Quantum sensors based on the interference of cold atoms have advanced to the forefront of precision ...
Quantum sensors based on atom interferometry are precise measurement devices whose ultimate performa...
Microgravity eases several constraints limiting experiments with ultracold and condensed atoms on gr...
Since the possibility of trapping and cooling neutral atoms, ultracold quantum gases have shifted bo...
The capability to reach ultracold atomic temperatures in compact instruments has recently been exten...
Owing to the low-gravity conditions in space, space-borne laboratories enable experiments with exten...
Owing to the low-gravity conditions in space, space-borne laboratories enable experiments with exten...
Atom interferometry enables precision measurements with outstanding sensitivities in a broad field o...
International audienceRecent developments in quantum technology have resulted in a new generation of...
Bose-Einstein condensates (BECs) in free fall constitute a promising source for space-borne interfer...
Quantum sensors based on light pulse atom interferometers allow for measurements of inertial and ele...
We present projects for future space missions using new quantum devices based on ultracold atoms. Th...
Matter-wave interferometers based on Bose-Einstein condensates are exquisite tools for precision mea...
Quantum sensors utilising atom interferometry offer new perspectives for future gravity missions. Th...
International audienceAbstract Ultracold quantum gases are ideal sources for high-precision space-bo...
Quantum sensors based on the interference of cold atoms have advanced to the forefront of precision ...
Quantum sensors based on atom interferometry are precise measurement devices whose ultimate performa...
Microgravity eases several constraints limiting experiments with ultracold and condensed atoms on gr...
Since the possibility of trapping and cooling neutral atoms, ultracold quantum gases have shifted bo...
The capability to reach ultracold atomic temperatures in compact instruments has recently been exten...
Owing to the low-gravity conditions in space, space-borne laboratories enable experiments with exten...
Owing to the low-gravity conditions in space, space-borne laboratories enable experiments with exten...
Atom interferometry enables precision measurements with outstanding sensitivities in a broad field o...
International audienceRecent developments in quantum technology have resulted in a new generation of...
Bose-Einstein condensates (BECs) in free fall constitute a promising source for space-borne interfer...
Quantum sensors based on light pulse atom interferometers allow for measurements of inertial and ele...
We present projects for future space missions using new quantum devices based on ultracold atoms. Th...