MIT-Harvard Center for Ultracold Atoms, Research Laboratory of Electronics, and Department of Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Phys Rev Lett. 2012 Jun 15;108(24):240404. doi: 10.1103/PhysRevLett.108.240404. Epub 2012 Jun 13.
A degenerate Fermi gas is rapidly quenched into the regime of strong effective repulsion near a Feshbach resonance. The spin fluctuations are monitored using speckle imaging and, contrary to several theoretical predictions, the samples remain in the paramagnetic phase for an arbitrarily large scattering length. Over a wide range of interaction strengths a rapid decay into bound pairs is observed over times on the order of 10ℏ/E(F), preventing the study of equilibrium phases of strongly repulsive fermions. Our work suggests that a Fermi gas with strong short-range repulsive interactions does not undergo a ferromagnetic phase transition.
简并费米气体在费什巴赫共振附近的强有效排斥区域中迅速淬火。使用散斑成像监测自旋涨落,与几个理论预测相反,对于任意大的散射长度,样品仍保持顺磁相。在广泛的相互作用强度范围内,在大约 10ℏ/E(F)的时间内观察到迅速衰减到束缚对,从而阻止了对强排斥费米子的平衡相的研究。我们的工作表明,具有强短程排斥相互作用的费米气体不会经历铁磁相变。