论文标题
中微子火箭喷气模型:高速脉冲星及其旋转进化的解释
Neutrino Rocket Jet Model: An Explanation of High-velocity Pulsars and their Spin-down Evolution
论文作者
论文摘要
脉冲星的空间速度通常高于其祖细胞恒星的事实,使天文学家困扰了近50年。人们广泛认为,高脉冲速度应在超新星爆炸中的100ms -10s时期内出现踢球过程中获得,其中某些不对称的动力学机制起关键作用。但是,通常仍然缺乏令人满意的图片。在这项研究中,有人认为,中微子火箭模型可以很好地解释脉冲星的高速和长期进化行为。中微子是通过中微子回旋子辐射机制从超流体涡流中子发出的。左手中微子和右手抗管的独特特征是由于弱相互作用中的均等差异引起的,在空间不对称中起着重要作用。该模型可以自然地解释脉冲星的连续加速度,该模型产生的最大速度超过1000 km s $^{ - 1} $。可以很好地解释旋转轴(PSR 0531)和Vela Pulsar(PSR 0833)的旋转轴与运动方向之间的比对。也可以令人满意地解释观察到的旋转速率与$ p \ gtrsim 0.5 $ s的长周期脉冲星之间的相关性。
The fact that the spatial velocity of pulsars is generally higher than that of their progenitor stars has bothered astronomers for nearly 50 years. It has been extensively argued that the high pulsar velocity should be acquired during a natal kick process on a timescale of 100ms - 10s in the supernova explosion, in which some asymmetrical dynamical mechanism plays a key role. However, a satisfactory picture generally is still lacking. In this study, it is argued that the neutrino rocket model can well account for the high speed as well as the long-term evolution behaviors of pulsars. The neutrinos are emitted from superfluid vortex neutrons through the neutrino cyclotron radiation mechanism. The unique characters of left-handed neutrinos and right-handed antineutrinos resulting from the nonconservation of parity in weak interactions play a major role in the spatial asymmetry. The continuous acceleration of pulsars can be naturally explained by this model, which yields a maximum velocity surpassing 1000 km s$^{-1}$. The alignment between the spinning axis and the direction of motion observed for the Crab pulsar (PSR 0531) and the Vela pulsar (PSR 0833) can be well accounted for. The observed correlation between the spin-down rate and the period of long-period pulsars with $P \gtrsim 0.5$s can also be satisfactorily explained.