Observing the Influence of Reduced Dimensionality on Fermionic Superfluids

被引:10
作者
Sobirey, Lennart [1 ]
Biss, Hauke [1 ,2 ]
Luick, Niclas [1 ,2 ]
Bohlen, Markus [1 ,2 ]
Moritz, Henning [1 ,2 ]
Lompe, Thomas [1 ,2 ]
机构
[1] Univ Hamburg, Inst Laserphys, Luruper Chaussee 149, D-22761 Hamburg, Germany
[2] Univ Hamburg, Hamburg Ctr Ultrafast Imaging, Luruper Chaussee 149, D-22761 Hamburg, Germany
关键词
HIGH-TEMPERATURE SUPERCONDUCTIVITY; BOSE-CONDENSATION; TRANSITION-TEMPERATURE; BCS SUPERCONDUCTIVITY; PENETRATION-DEPTH; ENERGY GAPS; EVOLUTION; COHERENCE; CUPRATE; FIELD;
D O I
10.1103/PhysRevLett.129.083601
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Understanding the origins of unconventional superconductivity has been a major focus of condensed matter physics for many decades. While many questions remain unanswered, experiments have found the highest critical temperatures in layered two-dimensional materials. However, to what extent the remarkable stability of these strongly correlated 2D superfluids is affected by their reduced dimensionality is still an open question. Here, we use dilute gases of ultracold fermionic atoms as a model system to directly observe the influence of dimensionality on the stability of strongly interacting fermionic superfluids. We find that the superfluid gap follows the same universal function of the interaction strength regardless of dimensionality, which suggests that there is no inherent difference in the stability of two-and three-dimensional fermionic superfluids. Finally, we compare our data to results from solid state systems and find a similar relation between the interaction strength and the gap for a wide range of two-and three-dimensional superconductors.
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页数:7
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