论文标题
牛仔裤质量的高阶普遍不确定性原理校正
Higher-order generalized uncertainty principle corrections to the Jeans mass
论文作者
论文摘要
牛仔裤的不稳定性被认为是分析自我散发系统动力学的重要工具。但是,由于天文观察数据显示了一些bok球的质量小于牛仔裤质量,但仍有恒星或至少要经历恒星形成过程,因此该理论具有挑战性。为了解释这个问题,我们研究了高阶普遍不确定性原理对折叠分子云的牛仔裤质量的影响。本文的结果表明,高阶的普遍不确定性原理对构想气体的规范能量和重力潜力具有非常重要的影响,最后导致高于原始情况的改良牛仔裤质量,这有利于小型大型小球中的恒星产生。此外,我们通过应用BOK球的各种数据来估算新的广义不确定性原理参数$γ_0$,并发现$γ_0$的数量范围为$ {10^{11}}} \ sim {10^{12^{12}}} $。
The Jeans instability is regarded as an important tool for analyzing the dynamics of a self-gravitating system. However, this theory is challenging since astronomical observation data show some Bok globules, whose masses are less than the Jeans mass and still have stars or at least undergo the star formation process. To explain this problem, we investigate the effects of the higher-order generalized uncertainty principle on the Jeans mass of the collapsing molecular cloud. The results in this paper show that the higher order generalized uncertainty principle has a very significant effect on the canonical energy and gravitational potential of idea gas, and finally leads to a modified Jeans mass lower than the original case, which is conducive to the generation of stars in small mass Bok globules. Furthermore, we estimate the new generalized uncertainty principle parameter $γ_0$ by applying various data of Bok globules, and find that the range of magnitude of $γ_0$ is ${10^{11}} \sim {10^{12}}$.