The influence of spin–spin interaction on high partial wave Feshbach resonance in ultracold 23Na -87Rb system

Bo-Wen Si, Jing-Lun Li, Gao-Ren Wang, Shu-Lin Cong
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Abstract

In this paper, we investigate the Feshbach resonances of high partial waves and the influence of spin–spin (S–S) interaction on ultracold scattering processes. Taking the Na23- Rb87 system as an example, we plot the variations of weakly bound state energy and elastic scattering cross section with magnetic field and with collision energy. We find that the number of splittings in high partial wave Feshbach resonances does not strictly conform to the expected l + 1 (l is rotational angular momentum), and the deviation is attributed to the influence of bound states in other channels coupled by S–S interaction. For different ml (the projection of l on the external magnetic field direction), the effects of S–S interaction lead to different scattering patterns in the incident channels. These results reveal the complex features of ultracold scattering processes in high partial waves caused by S–S interaction.
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自旋-自旋相互作用对超冷 23Na -87Rb 系统中高偏波费什巴赫共振的影响
本文研究了高偏波的费什巴赫共振以及自旋-自旋(S-S)相互作用对超冷散射过程的影响。以 Na23- Rb87 体系为例,我们绘制了弱束缚态能量和弹性散射截面随磁场和碰撞能量的变化曲线。我们发现,高偏波费什巴赫共振中的分裂数并不严格符合预期的 l + 1(l 为旋转角动量),这种偏差归因于 S-S 相互作用耦合的其他通道中束缚态的影响。对于不同的 ml(l 在外部磁场方向上的投影),S-S 相互作用的影响会导致入射通道中不同的散射模式。这些结果揭示了由 S-S 相互作用引起的高偏波超冷散射过程的复杂特征。
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