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Field-dipole orientation mechanism and higher order modes in atom guides

机译:原子波导中的场偶极定向机制和高阶模

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In cavity quantum electrodynamics (CQED), cavity size, dipole position and dipole orientation are the main factors controlling cavity effects, for example, suppression and enhancement of spontaneous emission. However, the dynamical effects of dipole orientation in CQED have, to date, remained largely unexplored, with most treatments simply concentrating on two (or three) orthogonal directions to illustrate the variations of CQED effects with dipole orientation. No mechanism which determines the evolution of the dipole orientation has been put forward to describe typical situations where atoms move in the field of an excited cavity mode. We emphasize here that in the presence of a cavity mode, the average dipole orientation is automatically determined at every point to be parallel to the direction of the electric field vector of the cavity mode. Besides giving rise to a single value for the spontaneous emission rate, this mechanism is shown to have important consequences for the dynamics of atoms in atom guides. In particular, it determines the average trapping potential distributions and the average radiation forces which guide the atoms along a cylindrical cavity. The effects of the field-dipole orientation mechanism are illustrated with reference to typical situations involving sodium atoms in sub-micron cylindrical guides. The role of a higher order cavity mode of the cylinder in the dynamics is highlighted in terms of its influence on the rotational and vibrational motions in such guides.
机译:在腔量子电动力学(CQED)中,腔尺寸,偶极位置和偶极方向是控制腔效应的主要因素,例如,抑制和增强自发辐射。然而,迄今为止,在CQED中偶极子取向的动力学效应仍未得到充分探索,大多数治疗仅集中在两个(或三个)正交方向上以说明CQED效应随偶极子取向的变化。尚未提出确定偶极子方向发展的机制来描述原子在激发腔模场中移动的典型情况。在此我们强调,在存在腔模的情况下,平均偶极子方向会在每个点处自动确定,以平行于腔模电场矢量的方向。除了产生自发发射速率的单个值外,该机制还显示出对原子导向中原子动力学的重要影响。特别是,它确定了平均俘获势分布和平均辐射力,这些平均辐射势和平均辐射力沿圆柱腔引导原子。参考涉及亚微米圆柱形导向器中钠原子的典型情况,说明了场偶极子定向机制的作用。汽缸的高阶腔模在动力学中的作用因其对这种导向装置中的旋转和振动运动的影响而突出。

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