论文标题
保真度易感性作为相应量的过渡的诊断:可编程Rydberg链的重新访问
Fidelity susceptibility as a diagnostic of the commensurate-incommensurate transition: A revisit of the programmable Rydberg chain
论文作者
论文摘要
近年来,可编程的Rydberg-Atom阵列已被广泛用于模拟新的量子阶段和相变,从而在理论家和实验者中引起了极大的兴趣。基于大规模密度矩阵重新归一化组方法,研究了一维rydberg链的地面相图,并以富度敏感性作为有效的诊断方法进行了忠诚度。我们发现Rydberg封锁与外部失调之间的竞争会产生非常规的阶段和相变。随着Rydberg封锁半径的增加,无序和密度波之间的相位转变从标准的POTTS普遍性类别变为非常规性手性。随着半径的进一步增加(Potts点上方,但仍接近叶的尖端),一个非常狭窄的中间浮动相区域开始出现。还提供了简洁的物理图片来说明数值结果。与以前的研究相比,这项工作从量子信息的角度出现了可编程量子模拟器中相应的量子相变的更多证据,这表明可以使用保真度易感性来研究此类相变。
In recent years, programmable Rydberg-atom arrays have been widely used to simulate new quantum phases and phase transitions, generating great interest among theorists and experimentalists. Based on the large-scale density matrix renormalization group method, the ground-state phase diagram of one-dimensional Rydberg chains is investigated with fidelity susceptibility as an efficient diagnostic method. We find that the competition between Rydberg blockade and external detuning produces unconventional phases and phase transitions. As the Rydberg blockade radius increases, the phase transition between disordered and density-wave ordered phases changes from the standard Potts universality class to an unconventional chiral one. As the radius increases further (above Potts point but still close to the tip of the lobe), a very narrow intermediate floating-phase region begins to appear. A concise physical picture is also provided to illustrate the numerical results. Compared with previous studies, this work brings more evidence for commensurate-incommensurate quantum phase transitions in programmable quantum simulators from the perspective of quantum information, showing that fidelity susceptibility can be used to study such phase transitions.