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Alignment of Neutral Molecules by a Strong Nonresonant Linearly Polarized Laser Field

机译:中性分子通过强的非族裔线性偏振激光场对准

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We demonstrate that a strong nonresonant nanosecond laser pulse can be used to align neutral molecules. Our technique, applicable to nonpolar as well as polarmolecules, relies on the anisotropic interaction between the strong laser field and the induced dipole moment of the molecules. The degree of alignment is enhanced by increasing the laser intensity or by lowering the initial rotational temperature of the molecules. We measure the alignment by detecting the instantaneous direction of the photodissociated fragments with ion imaging techniques. We have also investigated the possibility of molecular orientation using an asymmetric potential created by the superposition of strong, nonresonant, two-color (ω + 2ω) laser fields. The time-independent Schrodinger equations are numerically solved in an adiabatic regime. Our results suggest that our approach can be used to orient polar molecules if they are rotationally cold.
机译:我们证明了强烈的非族聚酯纳秒激光脉冲可用于对准中性分子。我们适用于非极性以及Polarmolecules的技术依赖于强激光场与诱导分子的偶极力矩之间的各向异性相互作用。通过增加激光强度或降低分子的初始旋转温度来提高对准程度。通过检测具有离子成像技术的光电解的片段的瞬时方向来测量对准。我们还研究了利用由强,非族裔的双色(ω+2Ω)激光场的叠加产生的不对称潜力来调查分子取向的可能性。独立于时空的Schrodinger方程在绝热状态下进行了数量解决。我们的研究结果表明,如果它们旋转冷却,我们的方法可用于定位极性分子。

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