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Earth Moon and Planets | 1973

Orbital mapping of the lunar magnetic field

L. R. Sharp; P. J. Coleman; B. R. Lichtenstein; C. T. Russell; Gerald Schubert

AbstractMagnetometer data obtained during the first four lunations after the deployment of the Apollo 15 subsatellite have been used to construct contour maps of the lunar magnetic field referred to 100 km altitude. These contour maps cover a relatively small band on the lunar surface. Within the region covered there is a marked near side-far side asymmetry. The near-side field is generally weaker and less structured than the far-side field. The strongest intrinsic lunar magnetic field detected is between the craters Van de Graaff and Aitken, centered at 20°S and 172°E. The variation in field strength with altitude for this feature suggests that its scale size is on the order of 80 km. A magnetization contrast between this region and its surroundings of the order of 6 × 10−5 emu-cm−3 is obtained assuming a 10-km thick slab. Preliminary Apollo 16 magnetometer data at extremely low altitude (0 to 10 km) show a very structured magnetic field with field strengths up to 56γ. Large compressions in the magnetic field magnitude, just above the lunar limb regions, are occasionally detected when the Moon is in the solar wind. The occurrence of limb compressions is strongly dependent on the selenographic coordinates of the lunar region on the solar wind terminator beneath the orbit of the sub-satellite. The discovery of remanent magnetization of varying strength over much of the lunar surface and its correlation with limb compression source regions supports the hypothesis that limb compressions are due to the deflection of the solar wind by regions of strong magnetization at the lunar limbs. If this hypothesis is correct, then the map of lunar regions associated with compressions indicates that the northerly equatorial region on the far side is less strongly magnetized than the southerly equatorial region on the far side.


Reviews of Geophysics | 1974

Observations of moon-plasma interactions by orbital and surface experiments

Gerald Schubert; B. R. Lichtenstein


Journal of Geophysical Research | 1975

On the source of lunar limb compressions

C. T. Russell; B. R. Lichtenstein


Geochim. Cosmochim. Acta, v. Suppl. 3, pp. 2271-2286 | 1972

Magnetic fields near the Moon

P. J. Coleman; B. R. Lichtenstein; C. T. Russell; L. R. Sharp; Gerald Schubert


Archive | 1975

The fine-scale lunar magnetic field

C. T. Russell; P. J. Coleman; B. K. Fleming; L. Hilburn; G. Ioannidis; B. R. Lichtenstein; Gerald Schubert


Archive | 1973

Subsatellite measurements of the lunar magnetic field

C. T. Russell; P. J. Coleman; B. R. Lichtenstein; Gerald Schubert; L. R. Sharp


Archive | 1972

The particles and fields subsatellite magnetometer experiment

P. J. Coleman; B. R. Lichtenstein; C. T. Russell; Gerald Schubert; L. R. Sharp


Archive | 1974

The permanent and induced magnetic dipole moment of the moon

C. T. Russell; P. J. Coleman; B. R. Lichtenstein; Gerald Schubert


Geophysical Research Letters | 1974

Lunar dayside plasma sheet depletion: Inference from magnetic observations

Gerald Schubert; B. R. Lichtenstein; C. T. Russell; P. J. Coleman; B. F. Smith; D. S. Colburn; C. P. Sonett


Journal of Geophysical Research | 1974

Simultaneous Explorer 35 and Apollo 15 orbital magnetometer observations: Implications for lunar electrical conductivity inversions

Gerald Schubert; B. R. Lichtenstein; P. J. Coleman; C. T. Russell

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C. T. Russell

University of California

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P. J. Coleman

University of California

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L. R. Sharp

University of California

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