论文标题

一般性的旋转系统

General-relativistic spin system

论文作者

Artigas, Danilo, Bilski, Jakub, Crowe, Sean, Mielczarek, Jakub, Trześniewski, Tomasz

论文摘要

在欧几里得空间上定义的自旋系统的模型为研究广泛的凝结物质现象提供了强大的机械。虽然非相关主义的有效描述足以满足大多数应用程序,但考虑到此类模型的特殊和一般相对论扩展很有趣。在这里,我们介绍了一个框架,使我们能够在弯曲的时空上构造连续自旋变量的理论。我们的方法利用了非线性场空间理论的结果,该理论显示了如何构建紧凑的相空间模型,特别是对于自旋的球形相空间。遵循对应于自旋系统向自旋波表示的持续化的方法,我们假设具有klein-gordon场的形式的表示形式。这种表示等同于著名的荷斯坦 - 普里马科夫转换的半古典版本。然后执行自旋波表示的一般相关扩展,从而导致耦合到横向磁场的ISING模型的一般动机修改。我们方法的优点是其非壳结构,而将费米子耦合到一般相对论的流行方法通常取决于与物质的爱因斯坦野外方程的形式。此外,我们在被考虑的自旋系统与具有特定潜力的迪拉克式式式标量型域理论之间显示出等效性,这也是K-效率理论的一个例子。基于此,初步研究了引入的自旋场含量含量的宇宙学后果。

The models of spin systems defined on Euclidean space provide powerful machinery for studying a broad range of condensed matter phenomena. While the non-relativistic effective description is sufficient for most of the applications, it is interesting to consider special and general relativistic extensions of such models. Here, we introduce a framework that allows us to construct theories of continuous spin variables on a curved spacetime. Our approach takes advantage of the results of the non-linear field space theory, which shows how to construct compact phase space models, in particular for the spherical phase space of spin. Following the methodology corresponding to a bosonization of spin systems into the spin wave representations, we postulate a representation having the form of the Klein-Gordon field. This representation is equivalent to the semi-classical version of the well-known Holstein-Primakoff transformation. The general-relativistic extension of the spin wave representation is then performed, leading to the general-relativistically motivated modifications of the Ising model coupled to a transversal magnetic field. The advantage of our approach is its off-shell construction, while the popular methods of coupling fermions to general relativity usually depend on the form of Einstein field equations with matter. Furthermore, we show equivalence between the considered spin system and the Dirac-Born-Infeld type scalar field theory with a specific potential, which is also an example of k-essence theory. Based on this, the cosmological consequences of the introduced spin field matter content are preliminarily investigated.

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