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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Arbitrary orientation of atoms and molecules via coherent population trapping by elliptically polarized light
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Arbitrary orientation of atoms and molecules via coherent population trapping by elliptically polarized light

机译:椭圆偏振光通过相干人口陷阱实现原子和分子的任意取向

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The interaction of laser light of arbitrary polarization with systems of high angular momentum is considered. We show that elliptically polarized light creates an anisotropic spatial distribution of atomic and molecular angular momentum which is qualitatively different from the alignment and orientation induced by light of circular or linear polarization. Multilevel coherent population trapping within a manifold of ground-stare magnetic sublevels results in a nonclassical behavior of a high-J molecular rotor. The classical approximation for the angular momentum distribution is compared with the exact quantum calculations, and is shown to fail in cases of long interaction times and high intensities of the exciting light. In these limits, the quantum uncertainty defines the spatial width of the angular distribution. The applicability of the classical treatment is analyzed and found to be different in the cases of J-->J-1 and J-->J transitions. A biaxial spatial orientation with two preferential axes of rotation is experimentally created in sodium atoms via coherent population trapping by elliptically polarized light. A method for producing an arbitrary orientation of atomic angular momentum by magnetic field assisted coherent population trapping is proposed. [S1050-2947(99)01708-4]. [References: 39]
机译:考虑了任意偏振的激光与高角动量系统的相互作用。我们表明,椭圆偏振光会产生原子和分子角动量的各向异性空间分布,该分布在质量上与圆偏振或线偏振光引起的排列和取向不同。在地面凝视磁性子级的流形内捕获的多级相干种群会导致高J分子转子的非经典行为。将角动量分布的经典近似值与精确的量子计算进行了比较,并证明了在相互作用时间长和激发光强度高的情况下,该方法将失败。在这些限制下,量子不确定性定义了角分布的空间宽度。分析了经典处理的适用性,发现在J-> J-1和J-> J跃迁的情况下不同。在钠原子中,通过椭圆偏振光的相干粒子阱捕获,在实验中创建了具有两个优先旋转轴的双轴空间取向。提出了一种通过磁场辅助相干阱俘获产生原子角动量任意取向的方法。 [S1050-2947(99)01708-4]。 [参考:39]

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