Institute of Solid State Physics, Vienna University of Technology, Wiedner Hauptstr. 8-10, 1040 Vienna, Austria.
Phys Rev Lett. 2010 May 7;104(18):186402. doi: 10.1103/PhysRevLett.104.186402. Epub 2010 May 4.
The canonical view of heavy fermion quantum criticality assumes a single quantum critical point separating the paramagnet from the antiferromagnet. However, recent experiments on Yb-based heavy fermion compounds suggest the presence of non-Fermi liquid behavior over a finite zero-temperature region. Using detailed susceptibility and transport measurements we show that the classic quantum critical system, Ge-substituted YbRh(2)Si(2), also displays such behavior. We advance arguments that this is not due to a disorder-smeared quantum critical point, but represents a new class of metallic phase.
经典的重费米子量子临界点观点认为,在顺磁体和反铁磁体之间存在一个单一的量子临界点。然而,最近基于 Yb 的重费米子化合物的实验表明,在有限的零温区域内存在非费米液体行为。通过详细的磁化率和输运测量,我们表明经典的量子临界系统 Ge 取代的 YbRh2Si2 也表现出这种行为。我们提出了这样的观点,即这不是由于无序弥散的量子临界点,而是代表了一类新的金属相。