The development of a portable strontium lattice clock is discussed. Solutions to many of the engineering challenges required to build the next generation of portable and ultraprecise clocks will be presented. In particular, a) the realisation of a compact laser module which produces multiple stable laser frequencies required for the experiment and b) the progress made in the development of the atomics module.</p
International audienceThe increasing performance of optical lattice clocks has made them attractive ...
This work presents the first measurement campaigns performed with PTB transportable optical lattice ...
Optical atomic clocks have proven to be the most stable clocks with the lowest systematic uncertaint...
The development of a portable strontium lattice clock is discussed. Solutions to many of the enginee...
We report on progress in the development of subsystem-level devices which serve as building blocks f...
Strontium optical lattice clocks have undergone vast developments in the past decade with world lead...
Abstract We report on a transportable optical clock, based on laser-cooled strontium atoms trapped i...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
The subject of this thesis is the development of an atomic physics apparatus to study the possibilit...
This work presents the realisation and characterisation of the world’s smallest transportable optica...
Accurate time keeping is critical to the function and advancement of many human endeavours. Atomic c...
Strontium optical lattice clocks are proven to be excellent timekeepers. Their exceptional performan...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
The ESA mission “Space Optical Clock” project aims at operating an optical lattice clock on the ISS ...
Clocks based on optical transitions in ions and atoms are quickly moving to the forefront of the fre...
International audienceThe increasing performance of optical lattice clocks has made them attractive ...
This work presents the first measurement campaigns performed with PTB transportable optical lattice ...
Optical atomic clocks have proven to be the most stable clocks with the lowest systematic uncertaint...
The development of a portable strontium lattice clock is discussed. Solutions to many of the enginee...
We report on progress in the development of subsystem-level devices which serve as building blocks f...
Strontium optical lattice clocks have undergone vast developments in the past decade with world lead...
Abstract We report on a transportable optical clock, based on laser-cooled strontium atoms trapped i...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
The subject of this thesis is the development of an atomic physics apparatus to study the possibilit...
This work presents the realisation and characterisation of the world’s smallest transportable optica...
Accurate time keeping is critical to the function and advancement of many human endeavours. Atomic c...
Strontium optical lattice clocks are proven to be excellent timekeepers. Their exceptional performan...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
The ESA mission “Space Optical Clock” project aims at operating an optical lattice clock on the ISS ...
Clocks based on optical transitions in ions and atoms are quickly moving to the forefront of the fre...
International audienceThe increasing performance of optical lattice clocks has made them attractive ...
This work presents the first measurement campaigns performed with PTB transportable optical lattice ...
Optical atomic clocks have proven to be the most stable clocks with the lowest systematic uncertaint...