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Measuring the mass of solar system planets using pulsar timing

机译:使用Pulsar时序测量太阳系行星的质量

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High-precision pulsar timing relies on a solar system ephemeris in order to convert times of arrival (TOAs) of pulses measured at an observatory to the solar system barycenter. Any error in the conversion to the barycentric TOAs leads to a systematic variation in the observed timing residuals; specifically, an incorrect planetary mass leads to a predominantly sinusoidal variation having a period and phase associated with the planet's orbital motion about the Sun. By using an array of pulsars (PSRs J0437-4715, J1744-1134, J1857+0943, J1909-3744), the masses of the planetary systems from Mercury to Saturn have been determined. These masses are consistent with the best-known masses determined by spacecraft observations, with the mass of the Jovian system, 9.547921(2) X 10~(-4)(solar mass), being significantly more accurate than the mass determined from the Pioneer and Voyager spacecraft, and consistent with but less accurate than the value from the Galileo spacecraft. While spacecraft are likely to produce the most accurate measurements for individual solar system bodies, the pulsar technique is sensitive to planetary system masses and has the potential to provide the most accurate values of these masses for some planets.
机译:高精度脉冲定时依赖于太阳能系统星历,以便将脉冲的到达时间(TOA)转换为在天文台上测量到太阳能系统的重心。转换到重心TOA的任何错误导致观察到的时序残差的系统变化;具体地,不正确的行星质量导致主要的正弦变化,其具有与地球的轨道运动相关的时期和相位关于太阳的轨道。通过使用脉冲阵列(PSRS J0437-4715,J1744-1134,J1257 + 0943,J1909-3744),已经确定了从汞到土星的行星系统的群众。这些质量符合由航天器观测确定的最佳已知的质量,具有Jovian System的质量,9.547921(2)×10〜( - 4)(太阳能质量),显着比从先锋中确定的质量更精确和旅行者航天器,并与伽利略航天器的价值一致,但符合的一致。虽然航天器可能为各种太阳系体产生最准确的测量,但脉冲达技术对行星系统质量敏感,并且有可能为某些行星提供这些群众的最准确的值。

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