Thermal evolution modification due to radio-wave production inside rotating magnetized NS

P. Tadjimuratov
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Abstract

We study effect of additional cooling mechanism on the thermal evolution of rotating magnetized neutron star (NS). The influence of general relativistic effects on charge distribution inside a NS leads to the qualitative distinction of space charge distribution inside the conducting crust from that inside the super-conducting core which may play a source of a possible mechanism of radio-wave radiation production in the intermediate medium inside a rotating neutron star. This radiation may interact the matter of the neutron star and energy of the electromagnetic radiation can be transformed into the heating energy. The intensity of radio-wave radiation produced inside NS and its relation for the relaxation time of cooling of the rotating magnetized neutron star in the curved space-time are estimated. The relaxation time of cooling of the rotating mag-netized neutron star is essentially increased by heating arisen by the interaction of the generated electromagnetic radiation with the conducting matter of the neutron star crust. New suggested physical mechanism for the heating energy of the radio-wave radiation is proposed and some estimates on.
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旋转磁化NS内无线电波产生的热演化变化
研究了附加冷却机制对旋转磁化中子星热演化的影响。广义相对论效应对NS内部电荷分布的影响导致了导电壳内部和超导核内部空间电荷分布的质的区别,这可能是旋转中子星内部中间介质中无线电波辐射产生的可能机制的来源。这种辐射可以与中子星的物质相互作用,电磁辐射的能量可以转化为加热能量。估计了NS内产生的无线电波辐射强度及其与旋转磁化中子星在弯曲时空中冷却弛豫时间的关系。旋转磁化中子星冷却的弛豫时间主要是由于电磁辐射与中子星外壳的导电物质相互作用产生的加热而增加的。提出了无线电波辐射加热能量的新物理机制,并对其进行了估计。
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