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首页> 外文期刊>Physical Review X >Feshbach Resonances in p -Wave Three-Body Recombination within Fermi-Fermi Mixtures of Open-Shell Li6 and Closed-Shell Yb173 Atoms
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Feshbach Resonances in p -Wave Three-Body Recombination within Fermi-Fermi Mixtures of Open-Shell Li6 and Closed-Shell Yb173 Atoms

机译:在Fermi-Fe​​rmi在开壳Li6和闭合壳YB173原子中的Fermi-Fe​​rmi混合物中P-Wave三体重组中的Feshbach共振

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We report on the observation of magnetic Feshbach resonances in a Fermi-Fermi mixture of ultracold atoms with extreme mass imbalance and on their unique p-wave dominated three-body recombination processes. Our system consists of open-shell alkali-metal 6 Li and closed-shell 173Yb atoms, both spin polarized and held at various temperatures between 1 and 20 μK. We confirm that Feshbach resonances in this system are solely the result of a weak separation-dependent hyperfine coupling between the electronic spin of 6 Li and the nuclear spin of 173Yb. Our analysis also shows that three-body recombination rates are controlled by the identical fermion nature ofthe mixture, even in the presence of s-wave collisions between the two species and with recombination rate coefficients outside the Wigner threshold regime at our lowest temperature. Specifically, a comparison of experimental and theoretical line shapes of the recombination process indicates that the characteristic asymmetric line shape as a function of applied magnetic field and a maximum recombination rate coefficient that is independent of temperature can only be explained by triatomic collisions with nonzero, p-wave total orbital angular momentum. The resonances can be used to form ultracold doublet ground-state molecules and to simulate quantum superfluidity in mass-imbalanced mixtures.
机译:我们报道了超极块不平衡和其独特的P波主导的三体重组过程中超容器中的Fermi-Fe​​rmi混合物中磁性FERMI混合物中的磁性FERMI混合物中的磁性FERMI混合物的观察。我们的系统由开壳碱金属6 Li和闭式壳173yB原子组成,两个旋转偏振,并在1到20μk的各种温度下保持。我们确认该系统中的Feshbach共振仅仅是弱分离依赖性高血清耦合的结果,在6 Li的电子旋转和173yB的核旋转之间。我们的分析还表明,即使在两个物种之间的S波碰撞和在我们的最低温度下,在两个物种之间的S波碰撞存在下,三体重组率也由混合物的相同的FERMION性质控制。具体地,重组过程的实验和理论线形状的比较表明,独立于温度的施加磁场和最大重组率系数的特征不对称系形状只能通过与非零,p的三族语碰撞来解释 - 远程轨道角动量。共振可用于形成超级倍增双细胞地 - 状态分子,并模拟质量不平衡混合物中的量子超浊度。

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