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嵌入反铁磁 SmTiO3 中的 SrTiO3 量子阱中的量子临界行为。

Quantum critical behaviour in confined SrTiO3 quantum wells embedded in antiferromagnetic SmTiO3.

机构信息

Materials Department, University of California, Santa Barbara, California 93106-5050, USA.

出版信息

Nat Commun. 2014 Jul 9;5:4258. doi: 10.1038/ncomms5258.

Abstract

Quantum phase transitions are driven by quantum fluctuations that alter the nature of the electronic quasiparticles, resulting in phenomena such as non-Fermi liquid behaviour. Oxide heterostructures offer fundamentally new ways of manipulating quantum criticality. Here, we report on non-Fermi liquid behaviour in thin SrTiO3 quantum wells that are embedded in insulating, antiferromagnetic SmTiO3, as a function of temperature, quantum well thickness and SmTiO3 layer thickness in superlattices. Such quantum wells contain very high sheet carrier densities on the order of one electron per pseudocubic planar unit cell. We show that the quantum well thickness is a tuning parameter for non-Fermi liquid behaviour. Increasing the thickness by a single atomic layer and coupling in superlattices recover the Fermi liquid behaviour. The critical exponents, the symmetry of the order parameter, the role of carrier densities and symmetry-lowering distortions are discussed, and the results are compared with those of quantum wells embedded in ferrimagnetic GdTiO3.

摘要

量子相变是由改变电子准粒子性质的量子涨落驱动的,导致了非费米液体行为等现象。氧化物异质结构为操纵量子临界点提供了全新的方法。在这里,我们报告了嵌入在绝缘反铁磁 SmTiO3 中的超薄 SrTiO3 量子阱中的非费米液体行为,这是作为温度、量子阱厚度和超晶格中 SmTiO3 层厚度的函数。这些量子阱在每个赝立方平面单元中包含非常高的载流子密度,约为一个电子。我们表明,量子阱厚度是调节非费米液体行为的参数。通过增加单个原子层的厚度并在超晶格中耦合,可以恢复费米液体行为。我们讨论了临界指数、有序参数的对称性、载流子密度的作用以及对称性降低的畸变,并将结果与嵌入亚铁磁 GdTiO3 中的量子阱进行了比较。

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