论文标题

混合尺寸的$ T-J $模型中的稳健条纹

Robust stripes in the mixed-dimensional $t-J$ model

论文作者

Schlömer, Henning, Bohrdt, Annabelle, Pollet, Lode, Schollwöck, Ulrich, Grusdt, Fabian

论文摘要

在密切相关的系统中,显微镜了解竞争订单是现代量子多体物理学的关键挑战。例如,条纹顺序的起源及其与Fermi-Hubbard模型配对的关系仍然是中心问题之一,并且可以帮助理解丘比特人中高温超导性的起源。在这里,我们分析了$ t-j $模型的掺杂的混合尺寸(混合)变体中的条纹形成,其中电荷载体仅限于一个方向移动,而磁性su(2)相互作用是二维的。在有限温度下,使用密度矩阵重新归一化组,在没有配对的情况下,我们发现稳定的垂直条纹相位,具有不稳定的磁性和远距离电荷密度波轮廓。我们发现在磁耦合$ \ sim j/2 $的顺序上的高临界温度,因此在当前量子模拟器的范围内。量子模拟器可访问的多体状态的快照揭示了混合设置中隐藏的自旋相关性,从而在考虑纯粹的磁背景时会增强反铁磁相关性。提出的模型可以看作是意识到条纹阶段的父母哈密顿量,其隐藏的自旋相关性导致预测的量子和热波动的弹性。

Microscopically understanding competing orders in strongly correlated systems is a key challenge in modern quantum many-body physics. For example, the origin of stripe order and its relation to pairing in the Fermi-Hubbard model remains one of the central questions, and may help to understand the origin of high-temperature superconductivity in cuprates. Here, we analyze stripe formation in the doped mixed-dimensional (mixD) variant of the $t-J$ model, where charge carriers are restricted to move only in one direction, whereas magnetic SU(2) interactions are two-dimensional. Using the density matrix renormalization group at finite temperature, we find a stable vertical stripe phase in the absence of pairing, featuring incommensurate magnetic order and long-range charge density wave profiles over a wide range of dopings. We find high critical temperatures on the order of the magnetic coupling $\sim J/2$, hence being within reach of current quantum simulators. Snapshots of the many-body state, accessible to quantum simulators, reveal hidden spin correlations in the mixD setting, whereby antiferromagnetic correlations are enhanced when considering purely the magnetic background. The proposed model can be viewed as realizing a parent Hamiltonian of the stripe phase, whose hidden spin correlations lead to the predicted resilience against quantum and thermal fluctuations.

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