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柯伊伯带,是一种理论推测认为短周期彗星是来自离太阳50—500天文单位的一个环带,位于太阳系的尽头。柯伊伯带是冰质残片组成的巨环,位于海王星轨道之外,环绕着太阳系的外边缘。

张晓辰在几天的时间里明白了更多太阳系物质多样性的一面:

红巨星,当一颗恒星度过它漫长的青壮年期——主序星阶段,步入老年期时,它将首先变为一颗红巨星。称它为“巨星”,是突出它的体积巨大。

在巨星阶段,恒星的体积将膨胀到十亿倍之多。称它为“红”巨星,是因为在这恒星迅速膨胀的同时,它的外表面离中心越来越远,所以温度将随之而降低,发出的光也就越来越偏红。不过,虽然温度降低了一些,可红巨星的体积是如此之大,它的光度也变得很大,极为明亮。红巨星一旦形成,就朝恒星的下一阶段白矮星进发。

白矮星,是一种低光度、高密度、高温度的恒星。因为颜色呈白色、体积比较矮小,因此被命名为白矮星。白矮星是一种很特殊的天体,它的体积小、亮度低,但质量大、密度极高。白矮星是中低质量的恒星的演化路线的终点。

在红巨星阶段的末期,恒星的中心会因为温度、压力不足或者核聚变达到铁阶段而停止产生能量。恒星外壳的重力会压缩恒星产生一个高密度的天体。一个典型的稳定独立白矮星具有大约半个太阳质量,比地球略大。

小主,这个章节后面还有哦,请点击下一页继续阅读,后面更精彩!这种密度仅次于中子星和夸克星。如果白矮星的质量超过1.4倍太阳质量,那么原子核之间的电荷斥力不足以对抗重力,电子会被压入原子核而形成中子星。原子是由原子核和电子组成的,原子的质量绝大部分集中在原子核上,在巨大的压力之下,电子将脱离原子核,成自由电子。

这种自由电子气体将尽可能地占据原子核之间的空隙,从而使单位空间内包含的物质也将大大增多,密度大大提高了。

形象地说,这时原子核是“沉浸于”电子中,常称之为“简并态”。大多数的恒星内核通过氢核聚变进行燃烧,将质量转变为能量,并产生光和热量,当恒星内部氢燃料完成消耗完后就开始进行氦融合反应,并形成更重的碳和氧,这一过程对于类似太阳这样的恒星而言,就显得较为短暂,并形成碳氧组成的白矮星,如果其质量大于1.4倍太阳质量,就会发生Ia型超新星爆发。

类星体,20世纪60年代以来,天文学家还找到一种在银河系以外象恒星一样表现为一个光点的天体,但实际上它的光度和质量又和星系一样,我们叫它类星体,现在已发现了数千个这种天体。

超新星,是恒星演化过程中的一个阶段。超新星爆发是某些恒星在演化接近末期时经历的一种剧烈爆炸。一般认为质量小于9倍太阳质量左右的恒星,在经历引力坍缩的过程后是无法形成超新星的。

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