Advances in the Measurement of the Lense-Thirring Effect with Planetary Motions in the Field of the Sun

L. Iorio
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引用次数: 10

Abstract

By processing more than 400 000 planetary observations of various types with the dynamical models of the EPM2006 ephemerides, E.V. Pitjeva recently estimated a correction to the canonical Newtonian-Einsteinian Venus' perihelion precession of − 0.0004 ± 0.0001 arcseconds per century. The prediction of general relativity for the Lense-Thirring precession of the perihelion of Venus is − 0.0003 arcseconds per century. It turns out that neither other mismodelled/unmodelled standard Newtonian/Einsteinian effects nor exotic ones, postulated to, for example, explain the Pioneer anomaly, may have caused the estimated extra-precession of the Venus orbit which, thus, can be reasonably attributed to the gravitomagnetic field of the Sun, not modelled in the routines of the EPM2006 ephemerides. However, it must be noted that the quoted error is the formal, statistical one; the realistic uncertainty might be larger. Future improvements of the inner planets' ephemerides, with the inclusion of the Messenger and Venus-Express tracking data, should further improve the accuracy and the consistency of such a test of general relativity which would also benefit from the independent estimation of the extra-precessions of the perihelia (and the nodes) by other teams of astronomers.
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太阳场中行星运动透镜效应测量的研究进展
通过使用EPM2006星历表的动力学模型处理40多万份不同类型的行星观测,E.V. Pitjeva最近估计了牛顿-爱因斯坦经典金星近日点进动的修正值为每世纪- 0.0004±0.0001角秒。广义相对论对金星近日点的透镜-蒂林进动的预测是每世纪- 0.0003角秒。事实证明,无论是其他错误建模/未建模的标准牛顿/爱因斯坦效应,还是那些被假设用来解释先驱者异常的奇异效应,都可能导致金星轨道的预估额外进动,因此,这可以合理地归因于太阳的引力磁场,而不是EPM2006星历表的常规模型。然而,必须注意的是,所引用的误差是正式的统计误差;现实的不确定性可能更大。未来对内行星星历表的改进,包括信使号和金星快车的跟踪数据,将进一步提高广义相对论测试的准确性和一致性,这也将受益于其他天文学家团队对近日点(和节点)的额外进动的独立估计。
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