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Analytical approach to atomic multichannel collisions in tight harmonic waveguides

机译:紧谐波波导中原子多通道碰撞的解析方法

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We perform an analytical investigation in the framework of generalized K-matrix theory of the scattering problem in tight isotropic and harmonic waveguides allowing for several open scattering channels. The scattering behavior is explored for identical bosons and fermions, as well as for distinguishable particles, the main aspect being the confinement-induced resonances (CIR) which are attributed to different partial waves. In particular, we present the unitarity bounds which emerge when considering a quasi-one-dimensional system. Unitarity bounds are also given for the transition coefficients, which show the limitations for efficient transversal (de) excitations by means of CIRs. We analyze the CIR for d waves and find the intriguing phenomenon of a strong transmission suppression in the presence of more than one open channel, which represents an interesting regime to be applied in the corresponding many-particle systems. The corresponding channel threshold singularities are studied and it is shown that these are solely determined by the symmetry class of the partial wave.
机译:我们在广义各向同性和谐波波导中允许多个开放散射通道的散射问题的广义K矩阵理论的框架内进行分析研究。探索了相同的玻色子和费米子以及可分辨粒子的散射行为,主要方面是由于不同的分波而引起的局限共振(CIR)。特别是,我们介绍了在考虑准一维系统时出现的统一性边界。还给出了跃迁系数的统一性界,这表明了利用CIR进行有效横向(de)激励的局限性。我们分析了d波的CIR,并发现了在一个以上开放信道的情况下强烈抑制传输的有趣现象,这代表了一种有趣的机制,可应用于相应的多粒子系统。研究了相应的信道阈值奇异性,结果表明,这些奇异性仅由分波的对称性类别确定。

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