26 citations · 32 across the 4 of their papers we have counts for
7 papers
Measuring the hyperfine splittings and deriving the hyperfine-interaction constants of Cesium 7D 5/2 excited state
Zerong Wang, Xiaokai Hou, Jiandong Bai +1
The measurement of Cesium (Cs) 7D5/2 excited state's hyperfine splitting intervals and hyperfine-interaction constants has been experimentally investigated based on ladder-type (85…
Rydberg level shift due to the electric field generated by Rydberg atom collision induced ionization in cesium atomic ensemble
Xin Wang, Jun He, Jiandong Bai +1
We experimentally studied the Rydberg level shift caused by the electric field, which is generated by Rydberg atom collision induced ionization in a cesium atomic ensemble. The den…
Towards implementation of a magic optical-dipole trap for confining ground-state and Rydberg-state cesium cold atoms
Jiandong Bai, Shuo Liu, Jun He +1
Long ground-Rydberg coherence lifetime is interesting for implementing high-fidelity quantum logic gates, many-body physics, and other quantum information protocols. However, the p…
Single-Photon Rydberg Excitation and Trap-Loss Spectroscopy of Cold Cesium Atoms in a Magneto-Optical Trap by Using of a 319-nm Ultra-Violet Laser System
Jiandong Bai, Shuo Liu, Jieying Wang +2
We demonstrate the single-photon Rydberg excitation of cesium atoms in a magneto-optical trap (MOT). We excite atoms directly from ground state to ${{nP}_{3/2}}(n=70…
Autler-Townes doublet in single-photon Rydberg spectra of Cesium atomic vapor with a 319 nm UV laser
Jiandong Bai, Jieying Wang, Shuo Liu +2
We demonstrate the single-photon excitation spectra of cesium Rydberg atoms by means of a Doppler-free purely all-optical detection with a room-temperature vapor cell and a 319 nm…
Single-photon cesium Rydberg excitation spectroscopy using 318.6-nm UV laser and room-temperature vapor cell
Jieying Wang, Jiandong Bai, Jun He +1
We demonstrate a single-photon Rydberg excitation spectroscopy of cesium (Cs) atoms in a room-temperature vapor cell. Cs atoms are excited directly from 6S1/2 ground state to nP3/2…