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Strong-coupling phases of frustrated bosons on a two-leg ladder with ring exchange

机译:带有交换环的两腿梯子上沮丧的玻色子的强耦合相

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Developing a theoretical framework to access the quantum phases of itinerant bosons or fermions in two dimensions that exhibit singular structure along surfaces in momentum space but have no quasiparticle description remains a central challenge in the field of strongly correlated physics. In this paper we propose that distinctive signatures of such two-dimensional (2D) strongly correlated phases will be manifest in quasi-one-dimensional "N-leg ladder" systems. Characteristic of each parent 2D quantum liquid would be a precise pattern of one-dimensional (1D) gapless modes on the N-leg ladder. These signatures could be potentially exploited to approach the 2D phases from controlled numerical and analytical studies in quasi-one-dimension. As a first step we explore itinerant-boson models with a frustrating ring-exchange interaction on the two-leg ladder, searching for signatures of the recently proposed two-dimensional d-wave-correlated Bose liquid (DBL) phase. A combination of exact diagonalization, density-matrix renormalization-group, variational Monte Carlo, and bosonization analysis of a quasi-1D gauge theory provide compelling evidence for the existence of an unusual strong-coupling phase of bosons on the two-leg ladder, which can be understood as a descendant of the two-dimensional DBL. We suggest several generalizations to quantum spin and electron Hamiltonians on ladders, which could likewise reveal fingerprints of such 2D non-Fermi-liquid phases.
机译:发展一个理论框架来访问二维的流动性玻色子或费米子的量子相,它们在动量空间中沿表面呈现出奇异的结构,但没有拟粒子描述,仍然是强相关物理学领域的主要挑战。在本文中,我们提出,此类二维(2D)强相关相位的独特特征将在准一维“ N腿阶梯”系统中体现。每个母体2D量子液体的特征将是N腿阶梯上的一维(1D)无间隙模式的精确模式。这些签名可能会被用于通过准一维的受控数值和分析研究来接近二维阶段。第一步,我们探索在两腿阶梯上具有令人沮丧的环交换相互作用的流动-玻色子模型,寻找最近提出的与d波相关的二维Bose液相(DBL)相的签名。精确的对角化,密度矩阵重归一化组,变分蒙特卡洛法和准一维规范理论的玻色化分析相结合,提供了令人信服的证据,证明两腿阶梯上存在一个异常的玻色子强耦合相,可以理解为二维DBL的后代。我们建议对梯形上的量子自旋和电子哈密顿量作一些概括,它们同样可以揭示此类二维非费米液相的指纹。

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