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Classical and Quantum Signatures of Quantum Phase Transitions in a (Pseudo) Relativistic Many-Body System

机译:(伪)相对论多体系中量子相变的古典和量子签名

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We identify a (pseudo) relativistic spin-dependent analogue of the celebrated quantum phase transition driven by the formation of a bright soliton in attractive one-dimensional bosonic gases. In this new scenario, due to the simultaneous existence of the linear dispersion and the bosonic nature of the system, special care must be taken with the choice of energy region where the transition takes place. Still, due to a crucial adiabatic separation of scales, and identified through extensive numerical diagonalization, a suitable effective model describing the transition is found. The corresponding mean-field analysis based on this effective model provides accurate predictions for the location of the quantum phase transition when compared against extensive numerical simulations. Furthermore, we numerically investigate the dynamical exponents characterizing the approach from its finite-size precursors to the sharp quantum phase transition in the thermodynamic limit.
机译:我们识别由魅力一维络气体中形成明亮孤子的庆祝量子相转变的(伪)相对型自旋依赖性类似物。在这种新情景中,由于同时存在线性色散和系统的旋转性质,必须采取特别小心的选择发生转变的能量区域。仍然是由于尺度的关键绝热分离,并通过广泛的数值对角鉴定,发现了描述过渡的合适有效模型。基于该有效模型的相应平均场分析提供了与广泛的数值模拟相比的量子相转变的位置的准确预测。此外,我们在数值上研究了从其有限尺寸前体的方法对热力学极限中的尖锐量子相变的方法的动态指数。

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