Legg Henry F, Braunecker Bernd
Institut für Theoretische Physik, Universität zu Köln, D-50937, Cologne, Germany.
SUPA, School of Physics and Astronomy, University of St Andrews, North Haugh, St Andrews, Fife KY16 9SS, United Kingdom.
Sci Rep. 2019 Nov 27;9(1):17697. doi: 10.1038/s41598-019-53842-7.
We propose an RKKY-type interaction that is mediated by a spin liquid. If a spin liquid exists such an interaction could leave a fingerprint by ordering underlying localised moments such as nuclear spins. This interaction has a unique phenomenology that is distinct from the RKKY interaction found in fermionic systems; most notably the lack of a Fermi surface and absence of the requirement for itinerant electrons, since most spin liquids are insulators. We demonstrate that the interaction is predominately shaped by the lattice symmetries of the underlying spin liquid. As a working example we investigate the possible ordering of nuclear spins that interact through an underlying lattice of the two-dimensional spin-1/2 kagome antiferromagnet (KHAF), although the treatment remains general and can be extended to other spin liquids and dimensions. We find that several different nuclear spin orderings minimise the RKKY-type energy induced by the KHAF but are unstable due to a zero-energy flat magnon band in linear spin-wave theory. Despite this we show that a small magnetic field is able to gap out this magnon spectrum resulting in an intricate nuclear magnetism.
我们提出了一种由自旋液体介导的RKKY型相互作用。如果存在自旋液体,这种相互作用可能会通过使诸如核自旋等潜在的局域磁矩有序排列而留下印记。这种相互作用具有独特的现象学特征,与费米子系统中的RKKY相互作用不同;最显著的是缺乏费米面,并且不需要巡游电子,因为大多数自旋液体都是绝缘体。我们证明,这种相互作用主要由潜在自旋液体的晶格对称性决定。作为一个实例,我们研究了通过二维自旋-1/2 Kagome反铁磁体(KHAF)的潜在晶格相互作用的核自旋的可能有序排列,尽管该处理方法具有通用性,可以扩展到其他自旋液体和维度。我们发现,几种不同的核自旋有序排列使KHAF诱导的RKKY型能量最小化,但由于线性自旋波理论中的零能量平坦磁振子带而不稳定。尽管如此,我们表明一个小磁场能够使这个磁振子谱产生能隙,从而导致复杂的核磁性。