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首页> 外文期刊>The journal of high energy physics >Crystallographic interacting topological phases and equivariant cohomology: to assume or not to assume
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Crystallographic interacting topological phases and equivariant cohomology: to assume or not to assume

机译:结晶相互作用拓扑阶段和等分症的同学:假设或不假设

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A bstract For symmorphic crystalline interacting gapped systems we derive a classification under adiabatic evolution. This classification is complete for non-degenerate ground states. For the degenerate case we discuss some invariants given by equivariant characteristic classes. We do not assume an emergent relativistic field theory nor that phases form a topological spectrum. We also do not restrict to systems with short-range entanglement, stability against stacking with trivial systems nor assume the existence of quasi-particles as is done in SPT and SET classifications respectively. Using a slightly generalized Bloch decomposition and Grassmanians made out of ground state spaces, we show that the P -equivariant cohomology of a d -dimensional torus gives rise to different interacting phases, where P denotes the point group of the crystalline structure. We compare our results to bosonic symmorphic crystallographic SPT phases and to non-interacting fermionic crystallographic phases in class A. Finally we discuss the relation of our assumptions to those made for crystallographic SPT and SET phases.
机译:用于叙事结晶的Bstract相互作用的覆盖系统,我们在绝热进化下获得了分类。此分类是非退化基础状态的完整。对于退化的情况,我们讨论了由等级特征类给出的一些不变性。我们不承担紧急的相对论场理论,并且阶段形成拓扑谱。我们也没有限制具有短距离纠缠的系统,与琐碎系统的堆叠稳定性,也不假设分别在SPT和设置分类中的准粒子的存在。使用略甘而广泛的Bloch分解和基地展示在地面状态空间中制作的基础,我们表明D-Dimensional orus的P-Qeavariant同学,其产生不同的相互作用相,其中P表示结晶结构的点组。我们将结果与A型助击性αsymorphic结晶SPT相的结果进行比较,并且在A类中的非相互作用的Fermionic结晶阶段。最后,我们讨论了我们对用于晶体SPT和设定阶段的那些人的假设的关系。

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