Belitz D, Kirkpatrick T R, Saha Ronojoy
Department of Physics and Materials Science Institute, University of Oregon, Eugene, OR 97403 USA.
Phys Rev Lett. 2007 Oct 5;99(14):147203. doi: 10.1103/PhysRevLett.99.147203. Epub 2007 Oct 2.
We consider a phi4 theory with a position-dependent distance from the critical point. One realization of this model is a classical ferromagnet subject to nonuniform mechanical stress. We find a sharp phase transition where the envelope of the local magnetization vanishes uniformly. The first-order transition in a quantum ferromagnet also remains sharp. The universal mechanism leading to a tricritical point in an itinerant quantum ferromagnet is suppressed, and in principle, one can recover a quantum critical point with mean-field exponents. Observable consequences of these results are discussed.
我们考虑一个与临界点距离呈位置依赖关系的φ4理论。该模型的一种实现方式是一个受到非均匀机械应力作用的经典铁磁体。我们发现了一个尖锐的相变,其中局部磁化强度的包络均匀消失。量子铁磁体中的一阶相变也仍然是尖锐的。导致巡游量子铁磁体中出现三临界点的普遍机制受到抑制,原则上,人们可以恢复具有平均场指数的量子临界点。讨论了这些结果的可观测后果。