论文标题
中子之星与中立之星:兰道出版90周年
Neutron Star versus Neutral Star: On the 90th anniversary of Landau's publication in astrophysics
论文作者
论文摘要
在开发量子力学的晚年,杰出参与者之一的列夫·兰道(Lev Landau)通过应用量子理论来竭尽全力理解物质的本质,甚至是出色的物质。九十年前,他发表了自己的“中子”明星的想法,在上一年访问欧洲时,他突然发表了他的想法。激励兰道(Landau)撰写论文的关键是使“巨大核”能量较低的状态避免了由于新的费米 - 迪拉克(Fermi-Dirac)统计数据而避免了极高的电子气体运动能量。兰道别无选择,只能通过“将质子和电子组合”来中和,因为在发现中子之前应该是电子和质子。但是,我们对本质的理解从根本上得到了改善,而另一种方式(即,奇怪的化)也可以体现中和,因此兰道所考虑的一个低能的状态,这可以在这个多门徒时代的天文学时代进一步使前所未有的机会。 “旧物理学”中的奇怪物质可能会对当今物理学产生巨大影响,从兰道(Landau)发起的紧凑型恒星到宇宙射线和暗物质。在本文中,我们简要地制定了中子之星概念的起源和发展,以彻底改革,以记住Landau在天体物理学中的实质性贡献,并回想起那些特殊的记忆。
In the late age of developing quantum mechanics, Lev Landau, one of the distinguished players, made great efforts to understand the nature of matter, even stellar matter, by applying the quantum theory. Ninety years ago, he published his idea of "neutron" star, which burst upon him during his visit over Europe in the previous year. The key point that motivated Landau to write the paper is to make a state with lower energy for "gigantic nucleus", avoiding extremely high kinematic energy of electron gas due to the new Fermi-Dirac statistics focused hotly on at that time. Landau had no alternative but to neutronize/neutralize by "combining a proton and an electron", as electron and proton were supposed to be elementary before the discovery of neutron. However, our understanding of the Nature has fundamentally improved today, and another way (i.e., strangeonization) could also embody neutralization and thus a low-energy state that Landau had in mind, which could further make unprecedented opportunities in this multi-messenger era of astronomy. Strangeon matter in "old" physics may impact dramatically on today's physics, from compact stars initiated by Landau, to cosmic rays and dark matter. In this essay, we are making briefly the origin and development of neutron star concept to reform radically, to remember Landau's substantial contribution in astrophysics and to recall those peculiar memories.