Boesl Julian, Zechmann Philip, Feldmeier Johannes, Knap Michael
Technical University of Munich, TUM School of Natural Sciences, Physics Department, 85748 Garching, Germany.
Munich Center for Quantum Science and Technology (MCQST), Schellingstrasse 4, 80799 München, Germany.
Phys Rev Lett. 2024 Apr 5;132(14):143401. doi: 10.1103/PhysRevLett.132.143401.
Fractonic constraints can lead to exotic properties of quantum many-body systems. Here, we investigate the dynamics of fracton excitations on top of the ground states of a one-dimensional, dipole-conserving Bose-Hubbard model. We show that nearby fractons undergo a collective motion mediated by exchanging virtual dipole excitations, which provides a powerful dynamical tool to characterize the underlying ground-state phases. We find that, in the gapped Mott insulating phase, fractons are confined to each other as motion requires the exchange of massive dipoles. When crossing the phase transition into a gapless Luttinger liquid of dipoles, fractons deconfine. Their transient deconfinement dynamics scales diffusively and exhibits strong but subleading contributions described by a quantum Lifshitz model. We examine prospects for the experimental realization in tilted Bose-Hubbard chains by numerically simulating the adiabatic state preparation and subsequent time evolution and find clear signatures of the low-energy fracton dynamics.
分形子约束可导致量子多体系统出现奇异性质。在此,我们研究一维、偶极守恒玻色 - 哈伯德模型基态之上的分形子激发动力学。我们表明,相邻分形子通过交换虚拟偶极激发进行集体运动,这为表征潜在的基态相提供了一个强大的动力学工具。我们发现,在有能隙的莫特绝缘相中,分形子相互束缚,因为运动需要交换大量偶极。当穿过相变进入无隙的偶极卢廷格液体时,分形子解除束缚。它们的瞬态解除束缚动力学呈扩散标度,并且表现出由量子里夫希茨模型描述的强但次要的贡献。我们通过数值模拟绝热态制备及随后的时间演化,研究了在倾斜玻色 - 哈伯德链中进行实验实现的前景,并发现了低能分形子动力学的清晰特征。