论文标题
与远距离相互作用的自旋1/2链中的量子临界值
Deconfined quantum criticality in spin-1/2 chains with long-range interactions
论文作者
论文摘要
我们研究旋转 - $ 1/2 $链条,具有远距离驱动的衰减未施工的(两部分)Heisenberg Exchange $ j_r \ propto r^{ - α} $和多型旋转互动$ q $偏爱价值 - 债券固体(VBS)基层状态。我们采用量子蒙特卡洛技术和兰开斯对角线化,分析订单参数和激发态水平的交叉点,以表征$(α,q)$平面中的量子状态和相变。对于虚弱的$ Q $和足够缓慢衰减的海森贝格相互作用(小$α$),该系统具有长期订购的反铁磁(AFM)基态,并且在增加$α$后,在准长期订购(QLRO)的关键状态下不断过渡到标准的Heisenberg Chand。对于快速衰减的远距离互动,QLRO和VBS接地状态之间的过渡与沮丧的$ J_1 $ -J_2 $ HEISENBERG连锁店相同。我们最重要的发现是AFM和VBS状态之间的直接连续量子相变 - 与2D脱合量子关键点的近似类似。在上一个类似物中,有序的阶段都具有散布的分数激发,而关键点是常规的Luttinger液体。在我们的模型中,激发从AFM状态过渡后,从旋转波变为脱纺纺纱片。我们在AFM-VBS过渡中提取关键指数,并使用订单参数分布来研究新兴的对称性。我们发现O($ 3 $)AFM和标量VBS订单参数的新兴O($ 4 $)对称性。因此,顺序参数波动表现出单轴变形O($ 4 $)球(“椭圆形”对称性)的协方差。这种不寻常的量子相转换尚未具有任何已知的现场理论描述,我们的详细结果可以用于指导其构建。我们讨论可能的实验实现。
We study spin-$1/2$ chains with long-range power-law decaying unfrustrated (bipartite) Heisenberg exchange $J_r \propto r^{-α}$ and multi-spin interactions $Q$ favoring a valence-bond solid (VBS) ground state. Employing quantum Monte Carlo techniques and Lanczos diagonalization, we analyze order parameters and excited-state level crossings to characterize quantum states and phase transitions in the $(α,Q)$ plane. For weak $Q$ and sufficiently slowly decaying Heisenberg interactions (small $α$), the system has a long-range-ordered antiferromagnetic (AFM) ground state, and upon increasing $α$ there is a continuous transition into a quasi long-range ordered (QLRO) critical state of the type in the standard Heisenberg chain. For rapidly decaying long-range interactions, there is transition between QLRO and VBS ground states of the same kind as in the frustrated $J_1$-$J_2$ Heisenberg chain. Our most important finding is a direct continuous quantum phase transition between the AFM and VBS states - a close analogy to the 2D deconfined quantum-critical point. In previous 1D analogies the ordered phases both have gapped fractional excitations, and the critical point is a conventional Luttinger Liquid. In our model the excitations fractionalize upon transitioning from the AFM state, changing from spin waves to deconfined spinons. We extract critical exponents at the AFM-VBS transition and use order-parameter distributions to study emergent symmetries. We find emergent O($4$) symmetry of the O($3$) AFM and scalar VBS order parameters. Thus, the order parameter fluctuations exhibit the covariance of a uniaxially deformed O($4$) sphere (an "elliptical" symmetry). This unusual quantum phase transition does not yet have any known field theory description, and our detailed results can serve to guide its construction. We discuss possible experimental realizations.