Ground-state hyperfine spectroscopy of Rb-87 atoms in a 1D optical lattice

  • Park, Sooyoung
  • Seo, Meung Ho
  • Cho, D.
Citations

WEB OF SCIENCE

3
Citations

SCOPUS

3

초록

We report our theoretical and experimental study on how the motional states of an atom trapped in a 1D optical lattice modify its hyperfine transition. We calculate and measure the inhomogeneously broadened line shape of a transition from the vertical bar 5S(1/2), F = 1, m(F) = 1 > state to the vertical bar 5S(1/2), F = 2, m(F) = 2 > state of 87Rb atoms in a lattice with various elliptic polarizations, and find excellent agreement. The atoms are at a temperature below 10 mu K, and the well depth at an antinode is 100 mu K. For the line shape calculation, we develop an efficient formula that allows us to evaluate the Franck-Condon factor from the 3D motional states accurately with a motional quantum number of as high as 1600. Precise spectroscopic measurements are conducted using evaporatively cooled atoms in a 980 nm lattice formed by a Fabry-Perot cavity placed inside a two-layer magnetic shield. Our results show how the broadening and decoherence of a ground hyperfine transition are related with the motional states. Inversely, our results can be applied to develop schemes to manipulate the motional states by using an inhomogeneously broadened hyperfine transition. As an example, we discuss the radio-frequency induced evaporative cooling in an optical lattice with a fixed well depth.

키워드

hyperfine spectroscopyoptical latticeinhomogeneous broadening
제목
Ground-state hyperfine spectroscopy of Rb-87 atoms in a 1D optical lattice
저자
Park, SooyoungSeo, Meung HoCho, D.
DOI
10.1088/1361-6455/ab4953
발행일
2019-12-14
유형
Article
저널명
Journal of Physics B: Atomic, Molecular and Optical Physics
52
23