论文标题
连续对称性破裂在二维Rydberg阵列中
Continuous Symmetry Breaking in a Two-dimensional Rydberg Array
论文作者
论文摘要
自发的对称打破了我们对物质阶段及其相关过渡的大部分基础。破裂的基本对称性的性质决定了阶段的许多定性特性。离散与连续对称性破坏的情况可以说明这一点。实际上,与离散情况相反,连续对称的破裂导致控制无间隙的金石模式的出现,例如,有序阶段的热力学稳定性。在这里,我们实现了使用可编程的Rydberg量子模拟器的二维偶极XY模型(表现出连续的自旋对称性)。我们证明了XY Ferromagnet和XY抗fiferromagnet的相关低温状态的绝热制备。在铁磁情况下,我们表征存在远程XY阶的存在,这是在没有远程偶极相互作用的情况下禁止的。我们对XY相互作用的多体物理学的探索使用了Rydberg-Blockade机制来补充最近的作品,以实现Ising型相互作用,表现出离散的自旋旋转对称性。
Spontaneous symmetry breaking underlies much of our classification of phases of matter and their associated transitions. The nature of the underlying symmetry being broken determines many of the qualitative properties of the phase; this is illustrated by the case of discrete versus continuous symmetry breaking. Indeed, in contrast to the discrete case, the breaking of a continuous symmetry leads to the emergence of gapless Goldstone modes controlling, for instance, the thermodynamic stability of the ordered phase. Here, we realize a two-dimensional dipolar XY model -- which exhibits a continuous spin-rotational symmetry -- utilizing a programmable Rydberg quantum simulator. We demonstrate the adiabatic preparation of correlated low-temperature states of both the XY ferromagnet and the XY antiferromagnet. In the ferromagnetic case, we characterize the presence of long-range XY order, a feature prohibited in the absence of long-range dipolar interaction. Our exploration of the many-body physics of XY interactions complements recent works utilizing the Rydberg-blockade mechanism to realize Ising-type interactions exhibiting discrete spin rotation symmetry.