English

Controlling the Rotational and Hyperfine State of Ultracold $^{87}$Rb$^{133}$Cs Molecules

Quantum Gases 2016-11-02 v1 Atomic Physics Quantum Physics

Abstract

We demonstrate coherent control of both the rotational and hyperfine state of ultracold, chemically stable 87^{87}Rb133^{133}Cs molecules with external microwave fields. We create a sample of ~2000 molecules in the lowest hyperfine level of the rovibronic ground state N = 0. We measure the transition frequencies to 8 different hyperfine levels of the N = 1 state at two magnetic fields ~23 G apart. We determine accurate values of rotational and hyperfine coupling constants that agree well with previous calculations. We observe Rabi oscillations on each transition, allowing complete population transfer to a selected hyperfine level of N = 1. Subsequent application of a second microwave pulse allows transfer of molecules back to a different hyperfine level of N = 0.

Keywords

Cite

@article{arxiv.1608.03303,
  title  = {Controlling the Rotational and Hyperfine State of Ultracold $^{87}$Rb$^{133}$Cs Molecules},
  author = {Philip D. Gregory and Jesus Aldegunde and Jeremy M. Hutson and Simon L. Cornish},
  journal= {arXiv preprint arXiv:1608.03303},
  year   = {2016}
}

Comments

6 pages, 3 figures, 2 tables