论文标题

转子jackiw-rebbi型号:一种冷原子的手性对称性修复和夸克限制

The rotor Jackiw-Rebbi model: a cold-atom approach to chiral symmetry restoration and quark confinement

论文作者

González-Cuadra, Daniel, Dauphin, Alexandre, Aidelsburger, Monika, Lewenstein, Maciej, Bermudez, Alejandro

论文摘要

了解监禁的性质,以及与手性对称性自发破坏的关系,仍然是高能物理学中的长期问题之一。这项任务的困难源于当前分析和数值技术在非阿布尔仪表理论中解决非扰动现象的局限性。在这项工作中,我们展示了在简单模型中如何出现相似现象,以及如何使用最先进的冷原子量子模拟器进一步研究这些现象。更具体地说,我们介绍了转子jackiw-rebbi模型,即(1+1)维量子场理论,其中dirac fermions之间的相互作用是由量子转子介导的。从光学晶格中的超声原子的混合物开始,我们展示了该量子场理论如何以长波长极限出现。对于宽阔且与实验相关的参数制度,Dirac Fermions通过手性对称性的自发分解获得了动态质量。此外,我们研究量子和热波动的效果,这导致了手性对称性恢复的现象。最后,我们发现了一个限制量子相变,其中类似介子的费米子分别为与转子场拓扑孤子结合的夸克样准粒子。这些孤子在有限的化学电位上的增殖再次用于恢复手性对称性,在量子染色体动力学中与夸克 - 胶原等离子体产生了明显的类比,这种对称性与脱1的分数电荷共存。我们的结果表明,如何在现实的原子实验中分析这些现象之间的相互作用。

Understanding the nature of confinement, as well as its relation with the spontaneous breaking of chiral symmetry, remains one of the long-standing questions in high-energy physics. The difficulty of this task stems from the limitations of current analytical and numerical techniques to address non-perturbative phenomena in non-Abelian gauge theories. In this work, we show how similar phenomena emerge in simpler models, and how these can be further investigated using state-of-the-art cold-atom quantum simulators. More specifically, we introduce the rotor Jackiw-Rebbi model, a (1+1)-dimensional quantum field theory where interactions between Dirac fermions are mediated by quantum rotors. Starting from a mixture of ultracold atoms in an optical lattice, we show how this quantum field theory emerges in the long-wavelength limit. For a wide and experimentally-relevant parameter regime, the Dirac fermions acquire a dynamical mass via the spontaneous breakdown of chiral symmetry. Moreover, we study the effect of both quantum and thermal fluctuations, which lead to the phenomenon of chiral symmetry restoration. Finally, we uncover a confinement-deconfinement quantum phase transition, where meson-like fermions fractionalise into quark-like quasi-particles bound to topological solitons of the rotor field. The proliferation of these solitons at finite chemical potentials again serves to restore the chiral symmetry, yielding a clear analogy with the quark-gluon plasma in quantum chromodynamics, where this symmetry coexists with the deconfined fractional charges. Our results show how the interplay between these phenomena could be analyse in realistic atomic experiments.

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