Coupling of neutrino beam-driven MHD waves and resonant instabilities in rotating magnetoplasmas with neutrino two-flavour oscillations
旋转磁化等离子体中微子束驱动MHD波与双味振荡下共振不稳定性的耦合
We present an analysis of neutrino-driven magnetohydrodynamic (MHD) waves and instabilities in a rotating magnetoplasma with weak neutrino interactions. We show that neutrino-driven shear Alfvén and oblique magnetosonic waves can be coupled by the Coriolis force, forming new wave modes affected by this force, as well as neutrino beam and two neutrino flavour oscillations. Our work extends previous theories by demonstrating that shear Alfvén waves are influenced by neutrino effects and by identifying instabilities resulting from resonant interactions with both a streaming neutrino beam and flavour oscillations. We find that the Coriolis force, plasma density, and magnetic field strength significantly affect the profiles of instability growth rates. Such a growth rate for magnetosonic waves appears much higher than the Alfvén wave, implying that magnetosonic waves provide a superior mechanism for energy extraction from the neutrino beam. For typical parameters relevant to the protoneutron star surface, the instability time for magnetosonic waves may vary in the range 0.09─0.14 s, which is within the predicted time of the neutrino-driven explosion (0.3 s after bounce) reported in the recent three-dimensional MHD simulations of core-collapse supernovae. Our findings may shed new light on the physical mechanisms underlying core-collapse supernovae.
展开 ▾首次发现旋转耦合使剪切阿尔芬波受中微子束和味振荡影响产生不稳定性;磁声波增长率显著提高,不稳定性时间(0.09–0.14 s)落入三维核塌陷超新星模拟的爆发窗口(0.3 s)。
该研究立足于Haas+ 2016提出的中微子磁流体(NMHD)模型与Chatterjee+ 2023关于中微子束驱动斜磁声波不稳定性的工作,这些既往研究均表明剪切阿尔芬波不受中微子束和味振荡的影响。近期Misra+ 2025指出,旋转流体的科里奥利力可耦合斜磁声波与阿尔芬波,本文在此基础上首次揭示旋转耦合导致阿尔芬波发生中微子驱动的共振不稳定性,并显著提升磁声波增长率,不稳定性时间与核塌陷超新星三维模拟的爆发时标(0.3 s)一致。该结果为超新星激波复活机制提供了新的微观物理通道,未来可进一步纳入有限电导率、霍尔电流等非理想磁流体效应,拓展模型的实际适用性。
预印本 2025-10-22 · 刊出 2026-07-02 · 收录 2026-07-22