INO-CNR BEC Center and Dipartimento di Fisica, Università di Trento, 38123 Povo, Italy.
Trento Institute for Fundamental Physics and Applications, INFN, 38123 Povo, Italy.
Phys Rev Lett. 2018 Apr 27;120(17):170401. doi: 10.1103/PhysRevLett.120.170401.
The spin dynamics of a harmonically trapped Bose-Einstein condensed binary mixture of sodium atoms is experimentally investigated at finite temperature. In the collisional regime the motion of the thermal component is shown to be damped because of spin drag, while the two condensates exhibit a counterflow oscillation without friction, thereby providing direct evidence for spin superfluidity. Results are also reported in the collisionless regime where the spin components of both the condensate and thermal part oscillate without damping, their relative motion being driven by a mean-field effect. We also measure the static polarizability of the condensed and thermal parts and we find a large increase of the condensate polarizability with respect to the T=0 value, in agreement with the predictions of theory.
实验研究了有限温度下束缚在简谐势中的玻色-爱因斯坦凝聚双原子钠混合物的自旋动力学。在碰撞区,由于自旋拖曳,热组分的运动被阻尼,而两个凝聚体则无摩擦地表现出反向流动振荡,从而为自旋超流提供了直接证据。还报道了无碰撞区的结果,其中两个凝聚体和热部分的自旋分量都没有阻尼地振荡,它们的相对运动由平均场效应驱动。我们还测量了凝聚体和热部分的静态极化率,发现凝聚体的极化率相对于 T=0 值有很大的增加,这与理论预测一致。