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Effective sideband cooling in an ytterbium optical lattice clock
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作者 Jin-Qi Wang Ang Zhang +6 位作者 Cong-Cong Tian Ni Yin Qiang Zhu Bing Wang Zhuan-Xian Xiong Ling-Xiang He bao-long lv 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第9期234-237,共4页
Sideband cooling is a key technique for improving the performance of optical atomic clocks by preparing cold atoms and single ions into the ground vibrational state.In this work,we demonstrate detailed experimental re... Sideband cooling is a key technique for improving the performance of optical atomic clocks by preparing cold atoms and single ions into the ground vibrational state.In this work,we demonstrate detailed experimental research on pulsed Raman sideband cooling in a 171 Yb optical lattice clock.A sequence comprised of interleaved 578 nm cooling pulses resonant on the 1st-order red sideband and 1388 nm repumping pulses is carried out to transfer atoms into the motional ground state.We successfully decrease the axial temperature of atoms in the lattice from 6.5μK to less than 0.8μK in the trap depth of 24μK,corresponding to an average axial motional quantum number<nz><0.03.Rabi oscillation spectroscopy is measured to evaluate the effect of sideband cooling on inhomogeneous excitation.The maximum excitation fraction is increased from 0.8 to 0.86,indicating an enhancement in the quantum coherence of the ensemble.Our work will contribute to improving the instability and uncertainty of Yb lattice clocks. 展开更多
关键词 sideband cooling yterbium optical atomic clock optical lattice
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