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Quantum many-body scar states in two-dimensional Rydberg atom arrays

机译:量子多体瘢痕状态在二维rydberg原子阵列中

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yy We find exponentially many exact quantum many-body scar states in a two-dimensional PXP model-an effective model for a two-dimensional Rydberg atom array in the nearest-neighbor blockade regime. Such scar states are remarkably simple valence bond solids despite being at an effectively infinite temperature, and thus strongly violate the eigenstate thermalization hypothesis. For a particular boundary condition, such eigenstates have integer-valued energies. Moreover, certain charge-density-wave initial states give rise to strong oscillations in the Rydberg excitation density after a quantum quench and towerlike structures in their overlaps with eigenstates.
机译:YY在最近的PXP模型中,我们发现了许多精确的量子多体瘢痕状态 - 最近邻的封锁制度中的二维Rydberg Atom阵列的有效模型。 尽管处于有效的无限温度,但这种瘢痕状态非常简单的价值粘合固体,因此强烈地侵犯了特征的热化假设。 对于特定的边界条件,这种eIgeNstates具有整数值的能量。 此外,某些电荷密度波初始状态导致rydberg激发密度的强烈振荡,其在与特征酯重叠的塔架和塔架结构之后。

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