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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Sub-Doppler laser cooling of atoms: Comparison of four multilevel atomic schemes - art. no. 013404
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Sub-Doppler laser cooling of atoms: Comparison of four multilevel atomic schemes - art. no. 013404

机译:亚多普勒原子的激光冷却:四种多级原子方案的比较-艺术。没有。 013404

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摘要

We extend the kinetic theory of the laser cooling of atoms to four multilevel atomic schemes: (3+5)-, (5+7)-, (7+9)-, and (9+11)-level atom. In all four atomic schemes the atoms are considered to be excited by two counterpropagating circularly polarized laser waves. A comparison of four multilevel atomic schemes shows that the even-order multiphoton processes are responsible for the narrow structures near zero velocity in the atomic coherences, atomic populations, dipole radiation forces, and the diffusion coefficients. The even-order multiphoton processes in a multilevel atom with a big number of magnetic sublevels are shown to produce the velocity structures, which are much narrower than that produced by the two-photon processes in a (3+5)-level atom. It is found that the multiphoton processes enhance the radiation force at low velocities and the friction produced by the force at a negative detuning. The even-order multiphoton processes caused by the laser waves are identified as the basic physical mechanism responsible for the sub-Doppler laser cooling of atoms. The temperature of laser-cooled atoms is derived for all four models and found to be lower for atomic schemes with a larger number of magnetic sublevels. [References: 16]
机译:我们将原子激光冷却的动力学理论扩展到四个多级原子方案:(3 + 5)-,(5 + 7)-,(7 + 9)-和(9 + 11)级原子。在所有四个原子方案中,认为原子是由两个反向传播的圆偏振激光波激发的。四个多级原子方案的比较表明,偶数级多光子过程是导致原子相干性,原子总数,偶极辐射力和扩散系数接近零速度的狭窄结构的原因。在具有大量磁性子级的多能级原子中,偶数级多光子过程显示出产生的速度结构,该速度结构比在(3 + 5)能级原子中的双光子过程产生的速度结构要窄得多。发现多光子过程在低速度时增强了辐射力,并且在负失谐时增强了该力所产生的摩擦。激光引起的偶数级多光子过程被认为是原子亚多普勒激光冷却的基本物理机制。激光冷却的原子的温度是针对所有四个模型得出的,对于具有较大磁性子级的原子方案,发现其温度较低。 [参考:16]

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