Institute for Theoretical Physics, University of Cologne, 50937 Cologne, Germany.
Phys Rev Lett. 2010 Nov 26;105(22):220405. doi: 10.1103/PhysRevLett.105.220405. Epub 2010 Nov 23.
As highly tunable interacting systems, cold atoms in optical lattices are ideal to realize and observe negative absolute temperatures, T<0. We show theoretically that, by reversing the confining potential, stable superfluid condensates at finite momentum and T<0 can be created with low entropy production for attractive bosons. They may serve as "smoking gun" signatures of equilibrated T<0. For fermions, we analyze the time scales needed to equilibrate to T<0. For moderate interactions, the equilibration time is proportional to the square of the radius of the cloud and grows with increasing interaction strengths as atoms and energy are transported by diffusive processes.
作为高度可调相互作用的系统,光学晶格中的冷原子是实现和观察负绝对温度 T<0 的理想选择。我们从理论上表明,通过反转限制势,可以为吸引玻色子创建具有低熵产生的有限动量和 T<0 的稳定超流凝聚体。它们可能成为平衡 T<0 的“确凿证据”。对于费米子,我们分析了达到 T<0 所需的平衡时间。对于中等相互作用,平衡时间与云的半径的平方成正比,并随着原子和能量通过扩散过程被输运而随着相互作用强度的增加而增加。