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Spin period evolution of a recycled pulsar in an accreting binary

机译:吸收脉冲星中循环脉冲星的自旋周期演化

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We investigate the spin period evolutions of recycled pulsars in binary accreting systems. Taking both the accretion induced field decay and spin-up into consideration, we calculate their spin period evolutions influenced by the initial magnetic field strengths, initial spin periods, and accretion rates. The results indicate that the minimum spin period (or maximum spin frequency) of a millisecond pulsar (MSP) is independent of the initial conditions and accretion rate when the neutron star (NS) accretes the mass of ?~0.2 M⊙. The accretion torque with the fastness parameter and gravitational wave (GW) radiation torque may be responsible for the formation of the minimum spin period (maximum spin frequency). The fastest spin frequency (716 Hz) of MSP can be inferred to associate with a critical fastness parameter of about ωc?=?0.55. Furthermore, comparisons with the observational data are presented in the field period (B???P) diagram.
机译:我们研究二进制吸积系统中脉冲星的自旋周期演变。考虑到吸积引起的磁场衰减和自旋,我们计算了受初始磁场强度,初始自旋周期和吸积率影响的自旋周期演变。结果表明,当中子星(NS)吸收质量为~~ 0.2M⊙的质量时,毫秒脉冲星(MSP)的最小自旋周期(或最大自旋频率)与初始条件和吸收速率无关。具有牢度参数和重力波(GW)辐射扭矩的吸积扭矩可能是形成最小自旋周期(最大自旋频率)的原因。可以推断出MSP的最快自旋频率(716 Hz)与大约ωc?=?0.55的临界牢度参数相关。此外,与观测数据的比较以场周期(B△P)图表示。

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