Regal C A, Jin D S
JILA, National Institute of Standards and Technology and Department of Physics, University of Colorado, Boulder, CO 80309-0440, USA.
Phys Rev Lett. 2003 Jun 13;90(23):230404. doi: 10.1103/PhysRevLett.90.230404.
We report on progress toward realizing a predicted superfluid phase in a Fermi gas of atoms. We present measurements of both large positive and large negative scattering lengths in a quantum degenerate Fermi gas of atoms near a magnetic-field Feshbach resonance. We employ an rf spectroscopy technique to directly measure the mean-field interaction energy, which is proportional to the s-wave scattering length. Near the peak of the resonance we observe a saturation of the interaction energy; it is in this strongly interacting regime that superfluidity is predicted to occur. We have also observed anisotropic expansion of the gas, which has recently been suggested as a signature of superfluidity. However, we find that this can be attributed to a purely collisional effect.
我们报告了在实现原子费米气体中预测的超流相方面所取得的进展。我们展示了在接近磁场费什巴赫共振的量子简并原子费米气体中,对大的正散射长度和大的负散射长度的测量结果。我们采用射频光谱技术直接测量平均场相互作用能,该能量与s波散射长度成正比。在共振峰值附近,我们观察到相互作用能达到饱和;正是在这个强相互作用区域中,预计会出现超流性。我们还观察到了气体的各向异性膨胀,最近有人提出这是超流性的一个标志。然而,我们发现这可以归因于纯粹的碰撞效应。