论文标题
非相关性玻色子星作为N体量子系统
Non-relativistic Boson Stars as N-Body Quantum Systems
论文作者
论文摘要
在目前的工作中,我们分析了形成引力结合的bose-Einstein冷凝物的一系列通用非相关玻色子集合的结构构型,我们将其解释为非权利主义玻色子星。我们证明,可以通过分析其基本成分特性,即单个粒子特性来获得系统的行为。此外,我们表明,通过在某些情况下以谐波振荡器电位表达相应的牛顿引力电位,我们可以描述非偏见的玻色子恒星可以形成平衡构型的条件。为了分析与玻色子星相关的结构构型,我们采用了文献中常用的四种\ textit {ansätze}。这些\ textit {ansätze}的使用允许比较玻色云或玻色子星的结构特性,这些特性导致从紧凑型OBJET到典型恒星的大小与非常巨大的系统相比,获得了几种平衡构型,与Galaxy Cluster clasty clasty Dark Matter Halos的大小相当。最后,我们表明,这些\ textit {ansätze}在定义上预测,对于所涉及的参数的不同值,相同的结构和重力平衡构型。
In the present work, we analyze the structural configuration of a collection of generic non-relativistic bosons forming a gravitational bound Bose-Einstein condensate that we interpreted as a non-relativistic boson star. We prove that the system's behavior can be obtained by analyzing its fundamental constituent's properties, i.e., the single particle properties. Additionally, we show that by expressing the corresponding Newtonian gravitational potential, under certain circumstances, as a harmonic oscillator potential ones, we can describe the conditions in which the non-relativistic boson star can form equilibrium configurations. In order to analyze the structural configuration related to the boson star, we employ four different \textit{ansätze} commonly used in the literature. The use of these \textit{ansätze} allows to compare the structural properties of the bosonic cloud or the boson star that leads to obtain several equilibrium configurations from compact objets matching to the size of typical stars to very gigantic systems comparable to the size of galaxy cluster dark matter halos. Finally, we show that these \textit{ansätze} predict, qualitatively speaking, the same structural and gravitational equilibrium configurations for different values of the parameters involved.