Chen Xing-Yan, Duda Marcel, Schindewolf Andreas, Bause Roman, Bloch Immanuel, Luo Xin-Yu
Max-Planck-Institut für Quantenoptik, 85748 Garching, Germany.
Munich Center for Quantum Science and Technology, 80799 München, Germany.
Phys Rev Lett. 2022 Apr 15;128(15):153401. doi: 10.1103/PhysRevLett.128.153401.
We study three-body loss in an ultracold mixture of a thermal Bose gas and a degenerate Fermi gas. We find that at unitarity, where the interspecies scattering length diverges, the usual inverse-square temperature scaling of the three-body loss found in nondegenerate systems is strongly modified and reduced with the increasing degeneracy of the Fermi gas. While the reduction of loss is qualitatively explained within the few-body scattering framework, a remaining suppression provides evidence for the long-range Ruderman-Kittel-Kasuya-Yosida (RKKY) interactions mediated by fermions between bosons. Our model based on RKKY interactions quantitatively reproduces the data without free parameters, and predicts one order of magnitude reduction of the three-body loss coefficient in the deeply Fermi-degenerate regime.
我们研究了热玻色气体和简并费米气体的超冷混合物中的三体损失。我们发现,在幺正性条件下,即种间散射长度发散时,非简并系统中常见的三体损失的平方反比温度标度会随着费米气体简并度的增加而被强烈修正并降低。虽然在少体散射框架内定性地解释了损失的减少,但剩余的抑制为玻色子之间由费米子介导的长程鲁德曼-基特尔-卡苏亚-约西达(RKKY)相互作用提供了证据。我们基于RKKY相互作用的模型在没有自由参数的情况下定量地重现了数据,并预测在深度费米简并 regime中三体损失系数会降低一个数量级。