AbstractWe report on our progress toward the realization of a Strontium optical lattice clock, which is under development at VNIIFTRI as a part of GLONASS program. We’ve prepared the narrow line width laser system for secondary cooling of 88Sr atoms which allows us to reach atom cloud temperature below 3μK after second cooling stage
Laser cooling has become a powerful tool for producing quantum gases and has enabled the study of a ...
Strontium optical lattice clocks are proven to be excellent timekeepers. Their exceptional performan...
This paper presents a detailed accuracy budget of two independent strontium optical lattice clocks a...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
The subject of this thesis is the development of an atomic physics apparatus to study the possibilit...
Accurate time keeping is critical to the function and advancement of many human endeavours. Atomic c...
This report concerns the experiment of precision spectroscopy of cold strontium atoms in the Polish ...
Narrow line laser cooling is advancing the frontier for experiments ranging from studies of fundamen...
Clocks based on optical transitions in ions and atoms are quickly moving to the forefront of the fre...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
This work describes the assembly and use of an apparatus for laser cooling and trapping of atomic st...
Abstract We report on a transportable optical clock, based on laser-cooled strontium atoms trapped i...
Optical atomic clocks have proven to be the most stable clocks with the lowest systematic uncertaint...
Laser cooling has become a powerful tool for producing quantum gases and has enabled the study of a ...
Strontium optical lattice clocks are proven to be excellent timekeepers. Their exceptional performan...
This paper presents a detailed accuracy budget of two independent strontium optical lattice clocks a...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
The subject of this thesis is the development of an atomic physics apparatus to study the possibilit...
Accurate time keeping is critical to the function and advancement of many human endeavours. Atomic c...
This report concerns the experiment of precision spectroscopy of cold strontium atoms in the Polish ...
Narrow line laser cooling is advancing the frontier for experiments ranging from studies of fundamen...
Clocks based on optical transitions in ions and atoms are quickly moving to the forefront of the fre...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
This work describes the assembly and use of an apparatus for laser cooling and trapping of atomic st...
Abstract We report on a transportable optical clock, based on laser-cooled strontium atoms trapped i...
Optical atomic clocks have proven to be the most stable clocks with the lowest systematic uncertaint...
Laser cooling has become a powerful tool for producing quantum gases and has enabled the study of a ...
Strontium optical lattice clocks are proven to be excellent timekeepers. Their exceptional performan...
This paper presents a detailed accuracy budget of two independent strontium optical lattice clocks a...