Neumann Michael, Nyéki Ján, Cowan Brian, Saunders John
Department of Physics, Royal Holloway, University of London, Egham, Surrey TW20 0EX, UK.
Science. 2007 Sep 7;317(5843):1356-9. doi: 10.1126/science.1143607. Epub 2007 Jul 26.
Two-dimensional helium-3 (3He) provides a simple model for the experimental investigation of the emergence of quantum complexity in a strongly correlated Fermi system. We have observed two-dimensional, two-band heavy-fermion behavior in bilayer films of 3He atoms when adsorbed on the surface of graphite preplated by a solid bilayer of 4He. Thermodynamic measurements on this system showed that the relevant control parameter is the total density of the 3He film. The 3He bilayer system can be driven toward a quantum critical point at which the effective mass appears to diverge, interband coupling vanishes, and a local-moment state appears. It opens a new testing ground for theories of quantum criticality in heavy-fermion materials.
二维氦 - 3(³He)为强关联费米系统中量子复杂性出现的实验研究提供了一个简单模型。当³He原子双层膜吸附在预先镀有4He固体双层的石墨表面时,我们观测到了二维双能带重费米子行为。对该系统的热力学测量表明,相关控制参数是³He膜的总密度。³He双层系统可被驱动至一个量子临界点,在该点有效质量似乎发散,带间耦合消失,且出现局域矩态。这为重费米子材料的量子临界性理论开辟了一个新的测试平台。