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The Lifetimes of Spirals and Bars

机译:螺旋和酒吧的寿命

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Simulations of isolated galaxy disks that are stable against bar formation readily manifest multiple, transient spiral patterns. It therefore seems likely that some spirals in real galaxies are similarly self-excited, although others are clearly driven by tidal interactions or by bars. The rapidly changing appearance of simulated spirals does not, however imply that the patterns last only a fraction of an orbit. Power spectrum analysis reveals a few underlying, longer-lived spiral waves that turn at different rates, which when super-posed give the appearance of swing-amplified transients. These longer-lived waves are genuine unstable spiral modes; each grows vigorously, saturates and decays over a total of several orbit periods. As each mode decays, the wave action created as it grew drains away to the Lindblad resonances, where it scatters stars. The resulting changes to the disk create the conditions for a new instability, giving rise to a recurring cycle of unstable modes.
机译:模拟孤立的星系盘,其稳定对杆状形成稳定,容易表现出多个瞬态螺旋模式。因此,实际星系中的一些螺旋似乎是同样自我兴奋的,尽管其他人被潮汐互动或杠杆显然驱动。然而,模拟螺旋的快速变化的外观并没有意味着图案持续一部分轨道。功率谱分析显示出几个潜在的更长寿命的螺旋波,这些螺旋波以不同的速率转动,这使得超构座提供摆动放大的瞬态的外观。这些更长的波浪是真正不稳定的螺旋模式;每个轨道周期都剧烈地增长,饱和和衰减。当每个模式衰减时,由于它的波浪行为将耗尽到Lindblad共振,因此它产生了散发出来。由此产生的磁盘的更改为新的不稳定创建了条件,从而产生了不稳定模式的重复周期。

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