论文标题

天文学和迪克的超赞

Astronomical masers and Dicke's superradiance

论文作者

Rajabi, Fereshteh, Houde, Martin

论文摘要

我们考虑使用基于Maxwell-Bloch方程的形式主义的气体反演的气体的辐射特性和过程。我们专注于Maser Action和Dicke的超高统治,以在系统的时间演变中建立其在整体辐射过程中的关系,这是位置的函数。我们表明,maser的作用和超高是不是竞争现象,而是互补的,并为辐射强度定义了两个不同的限制。当种群反转密度和极化幅度在时间尺度上的变化时,MASER的表征是准稳定状态极限的时间,而不是影响其演变的非连通过程(例如,碰撞),而超级逐步定义了在这些条件时会发生快速瞬态方案。我们展示了如何在人口反转的柱密度达到柱密度的临界阈值时,将如何从MASER制度到超级鼓励进行过渡,此时,在系统中建立了强大的连贯性,并且在短暂性策略期间可能会发生强大的辐射爆发。该临界水平还决定了将要进行从不饱和饱和MASER政权的过渡的空间区域;因此,超高可以看作是两者之间的中介。我们还量化了相对于两个MASER机制在上级阶段达到的辐射强度的增益,并显示了如何非常适合解释揭示Maser-andosting地区强烈而快速辐射耀斑的观察值的强大相干水平。

We consider the radiation properties and processes of a gas with a population inversion using the formalism based on the Maxwell-Bloch equations. We focus on the maser action and Dicke's superradiance to establish their relationship in the overall radiation process during the temporal evolution of the system as a function of position. We show that the maser action and superradiance are not competing phenomena but are rather complementary, and define two distinct limits for the intensity of radiation. Masers characterise the quasi-steady state limit, when the population inversion density and the polarisation amplitude vary on time-scales longer than those of non-coherent processes affecting their evolution (e.g., collisions), while superradiance defines the fast transient regime taking place when these conditions are reversed. We show how a transition from a maser regime to superradiance will take place whenever a critical threshold for the column density of the population inversion is reached, at which point a strong level of coherence is established in the system and a powerful burst of radiation can ensue during the transient regime. This critical level also determines the spatial region where a transition from the unsaturated to the saturated maser regimes will take place; superradiance can thus be seen as the intermediary between the two. We also quantify the gain in radiation intensity attained during the superradiance phase relative to the two maser regimes, and show how the strong coherence level during superradiance is well suited to explain observations that reveal intense and fast radiation flares in maser-hosting regions.

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