论文标题
带有几个孔的大$ U $哈伯德模型中的铁磁域:FCIQMC研究
Ferromagnetic domains in the large-$U$ Hubbard model with a few holes: an FCIQMC study
论文作者
论文摘要
研究了带有两个或三个孔的二维Hubbard Lattices,它是$ U $的函数。在所谓的Nagaoka极限(无限$ U $的一孔系统)中,众所周知,哈伯德模型具有铁磁地面状态。在这里,通过适用于多达24个站点的周期性晶格的精确FCIQMC模拟,我们计算自旋旋转相关函数作为增加$ u $的函数。相关函数清楚地证明了铁磁体结构域的发作,以各个孔为中心。波段的总体旋转仍然可能是最低的(0或$ \ frac {1} {2} $,具体取决于孔的数量)。铁磁域的相互作用强度与具有严格一个孔的有限系统中的Nagaoka过渡的临界相互作用强度相当。这种铁磁结构域的存在是nagaoka物理学的标志,在孔中较少(但大于一个)的哈伯德系统中。
Two-dimensional Hubbard lattices with two or three holes are investigated as a function of $U$ in the large-$U$ limit. In the so-called Nagaoka limit (one-hole system at infinite $U$), it is known that the Hubbard model exhibits a ferromagnetic ground-state. Here, by means of exact FCIQMC simulations applied to periodic lattices up to 24 sites, we compute spin-spin correlation functions as a function of increasing $U$. The correlation functions clearly demonstrate the onset of ferromagnetic domains, centred on individual holes. The overall total spin of the wavefunctions remain the lowest possible (0, or $\frac{1}{2}$, depending on the number of holes). The ferromagnetic domains appear at interaction strengths comparable to the critical interaction strengths of the Nagaoka transition in finite systems with strictly one hole. The existence of such ferromagnetic domains is the signature of Nagaoka physics in Hubbard systems with a small (but greater than one) number of holes.