A new strontium ion trap of the endcap design was built recently at the National Research Council of Canada for better control of the micromotion shifts. The uncertainty caused by these shifts has been reduced by more than four orders of magnitude compared to the original NRC trap, down to a level of 48 10-18. In this paper we discuss the evaluation of micromotion shifts and of several other sources of importance to optical frequency standards based on single ions. The total fractional frequency uncertainty of the new strontium ion trap system is estimated to be 48 2 7 10-17, limited by the blackbody radiation shift. A preliminary measurement of the clock transition frequency with a fractional uncertainty of 2 710-15, limited by the accu...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
We report a high-accuracy measurement of the differential static scalar polarizability \u394\u3b10 o...
An ion trap of the end-cap design was built recently at the National Research Council of Canada for ...
An overview of the key methods used to reduce the uncertainty of the systematic shifts of the stront...
We describe experiments and measurements on a trapped and laser-cooled single ion of Sr+88 which, wh...
We report on recent progress in the evaluation and reduction of the systematic shifts of the stronti...
The National Research Council of Canada (NRC) is currently involved in a number of research projects...
As part of the ongoing world-wide effort in improving time and frequency references, a high accuracy...
Improved functionality and accuracy of the NRC Sr\u207a single trapped ion 445-THz standard is descr...
We describe receent progress in the establishment of a versatile and reliable optical frequency stan...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
A number of optical frequency standards have been evaluated with fractional uncertainties between 10...
We present preliminary results on a method used to determine the differential scalar polarizability ...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
We report a high-accuracy measurement of the differential static scalar polarizability \u394\u3b10 o...
An ion trap of the end-cap design was built recently at the National Research Council of Canada for ...
An overview of the key methods used to reduce the uncertainty of the systematic shifts of the stront...
We describe experiments and measurements on a trapped and laser-cooled single ion of Sr+88 which, wh...
We report on recent progress in the evaluation and reduction of the systematic shifts of the stronti...
The National Research Council of Canada (NRC) is currently involved in a number of research projects...
As part of the ongoing world-wide effort in improving time and frequency references, a high accuracy...
Improved functionality and accuracy of the NRC Sr\u207a single trapped ion 445-THz standard is descr...
We describe receent progress in the establishment of a versatile and reliable optical frequency stan...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
A number of optical frequency standards have been evaluated with fractional uncertainties between 10...
We present preliminary results on a method used to determine the differential scalar polarizability ...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
We report on an evaluation of an optical clock that uses the S21/2→D25/2 transition of a single Sr+8...
We report a high-accuracy measurement of the differential static scalar polarizability \u394\u3b10 o...