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EIGHT NEW MILLISECOND PULSARS IN NGC 6440 AND NGC 6441

机译:NGC 6440和NGC 6441中的八种新的微扰脉冲

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摘要

Motivated by the recent discovery of 30 new millisecond pulsars in Terzan 5, made using the Green Bank Telescope's S-band receiver and the Pulsar Spigot spectrometer, we have set out to use the same observing system in a systematic search for pulsars in other globular clusters. Here we report on the discovery of five new pulsars in NGC 6440 and three in NGC 6441; each cluster previously had one known pulsar. Using the most recent distance estimates to these clusters, we conclude that there are as many potentially observable pulsars in NGC 6440 and NGC 6441 as in Terzan 5. We present timing solutions for all of the pulsars in these globular clusters. Four of the new discoveries are in binary systems; oneof them, PSRJ1748-2021B(NGC 6440B),hasawide(P_b = 20.5 days) and eccentric (e = 0.57) orbit. This allowed a measurement of its rate of advance of periastron, ω = 0.00391 (18)° yr~(-1). If this is a purely relativistic eifect, the total mass of this binary system is 2.92 ± 0.20 solar mass (1 σ) implying a median pulsar mass of 2.74 ± 0.21 solar mass. There is a 1 % probability that the inclination is low enough that pulsar mass is below 2 solar mass, and 0.10% probability that it is between 1.20 and 1.44 solar mass. If confirmed, this anomalously large mass would strongly constrain the equation of state for dense matter. The other highly eccentric binary, PSR J1750-37A, has e = 0.71, and ω = 0.0055(3)° yr~(-1), implying a total system mass of 1.97 ± 0.15 solar mass and, along with the mass function, maximum and median pulsar masses of 1.65 and 1.26 solar mass, respectively.
机译:基于最近使用Green Bank Telescope的S波段接收器和Pulsar Spigot光谱仪在Terzan 5发现30个新的毫秒脉冲星的动机,我们着手在同一系统中搜索其他球状星团的脉冲星时使用相同的观测系统。在这里,我们报告在NGC 6440中发现了五个新脉冲星,在NGC 6441中发现了三个;每个星团以前都有一个已知的脉冲星。使用对这些星团的最新距离估计,我们得出的结论是,NGC 6440和NGC 6441中的潜在可观测脉冲星与Terzan 5中的一样多。我们提出了这些球状星团中所有脉冲星的定时解决方案。新发现中的四个在二进制系统中。其中之一是PSRJ1748-2021B(NGC 6440B),宽(P_b = 20.5天)和偏心(e = 0.57)轨道。这样就可以测量其围生素的前进速度,ω= 0.00391(18)°yr〜(-1)。如果这纯粹是相对论的效应,那么该二元系统的总质量为2.92±0.20太阳质量(1σ),这意味着脉冲星质量的中位数为2.74±0.21太阳质量。倾斜度足够低以至脉冲星质量低于2太阳质量的概率为1%,倾斜度在1.20和1.44太阳质量之间的概率为0.10%。如果得到确认,那么这个异常大的质量将极大地约束致密物质的状态方程。另一个高度偏心的二进制PSR J1750-37A具有e = 0.71和ω= 0.0055(3)°yr〜(-1),这意味着系统总质量为1.97±0.15太阳质量,并带有质量函数,太阳质量的最大和中值脉冲星质量分别为1.65和1.26太阳质量。

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