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Corrections to atomic ground state energy due to interaction between atomic electric quadrupole and optical field
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作者 Jie Hu Yu Chen +3 位作者 Yi-Xiu Bai Pei-Song He Qing Sun An-Chun Ji 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第4期285-291,共7页
We study the ground state energy of an atom interacting with an oscillating optical field with electric dipole and quadrupole coupling.Under the rotating wave approximation,we derive the effective atomic Hamiltonians ... We study the ground state energy of an atom interacting with an oscillating optical field with electric dipole and quadrupole coupling.Under the rotating wave approximation,we derive the effective atomic Hamiltonians of the dipole/quadrupole coupling term within the perturbation theory up to the second order.Based on the effective Hamiltonians,we analyze the atomic ground-state energy corrections of these two processes in detail.As an application,we find that for alkali-like atoms,the energy correction from the quadrupole coupling is negligible small in comparison with that from the dipole coupling,which justifies the so-called dipole approximation used in literatures.Some special cases where the quadrupole interaction may have considerable energy corrections are also discussed.Our results would be beneficial for the study of atom–light interaction beyond dipole approximation. 展开更多
关键词 cold atom physics quantum optics atom-light interaction electric quadrupole
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