Patel Niravkumar D, Trivedi Nandini
Department of Physics, The Ohio State University, Columbus, OH 43210.
Department of Physics, The Ohio State University, Columbus, OH 43210
Proc Natl Acad Sci U S A. 2019 Jun 18;116(25):12199-12203. doi: 10.1073/pnas.1821406116. Epub 2019 May 31.
The Kitaev model with an applied magnetic field in the [Formula: see text] direction shows two transitions: from a nonabelian gapped quantum spin liquid (QSL) to a gapless QSL at [Formula: see text] and a second transition at a higher field [Formula: see text] to a gapped partially polarized phase, where K is the strength of the Kitaev exchange interaction. We identify the intermediate phase to be a gapless U(1) QSL and determine the spin structure function [Formula: see text] and the Fermi surface [Formula: see text] of the gapless spinons using the density matrix renormalization group (DMRG) method for large honeycomb clusters. Further calculations of static spin-spin correlations, magnetization, spin susceptibility, and finite temperature-specific heat and entropy corroborate the gapped and gapless nature of the different field-dependent phases. In the intermediate phase, the spin-spin correlations decay as a power law with distance, indicative of a gapless phase.
在[公式:见正文]方向施加磁场的基塔耶夫模型显示出两个转变:从非阿贝尔能隙量子自旋液体(QSL)到在[公式:见正文]处的无隙QSL,以及在更高磁场[公式:见正文]处的第二次转变到一个能隙部分极化相,其中K是基塔耶夫交换相互作用的强度。我们确定中间相为无隙U(1) QSL,并使用密度矩阵重整化群(DMRG)方法对大蜂窝簇确定无隙自旋子的自旋结构函数[公式:见正文]和费米面[公式:见正文]。对静态自旋 - 自旋关联、磁化强度、自旋磁化率以及有限温度比热和熵的进一步计算证实了不同场依赖相的能隙和无隙性质。在中间相中,自旋 - 自旋关联随距离按幂律衰减,表明是无隙相。