Yi Zhen, Gu Wen-ju, Li Gao-xiang
Department of Physics, Huazhong Normal University, Wuhan 430079, China.
Opt Express. 2013 Feb 11;21(3):3445-62. doi: 10.1364/OE.21.003445.
We propose a cooling scheme for a trapped atom using the phenomenon of cavity-induced double electromagnetically induced transparency (EIT), where the atom comprising of four levels in tripod configuration is confined inside a high-finesse optical cavity. By exploiting one cavity-induced EIT, which involves one cavity photon and two laser photons, carrier transition can be eliminated due to the quantum destructive interference of excitation paths. Heating process originated from blue-sideband transition mediated by cavity field can also be prohibited due to the destructive quantum interference with the additional transition between the additional ground state and the excited state. As a consequence, the trapped atom can be cooled to the motional ground state in the leading order of the Lamb-Dicke parameters. In addition, the cooling rate is of the same order of magnitude as that obtained in the cavity-induced single EIT scheme.
我们提出了一种利用腔诱导双电磁诱导透明(EIT)现象对捕获原子进行冷却的方案,其中处于三脚架构型的包含四个能级的原子被限制在一个高精细度光学腔内。通过利用一种涉及一个腔光子和两个激光光子的腔诱导EIT,由于激发路径的量子相消干涉,可以消除载流子跃迁。由于与附加基态和激发态之间的附加跃迁存在相消量子干涉,由腔场介导的源于蓝边带跃迁的加热过程也可以被抑制。因此,捕获原子可以在兰姆 - 迪克参数的主导阶冷却到运动基态。此外,冷却速率与在腔诱导单EIT方案中获得的冷却速率具有相同的数量级。