Lunar Surface Magnetometer
The Lunar Surface Magnetometer (LSM) was a lunar science experiment with the aim of providing insights into the interior of the Moon and how its latent magnetic field interacts with the solar wind. It was deployed on the Moon as part of Apollo 12, Apollo 14 and Apollo 16 missions.
Also recorded as LSM · S034 · S-034
Lunar Surface Magnetometer

Charles Duke, Apollo 16 Astronaut · NASA · Public domain
- Name
- Lunar Surface Magnetometer
- Field
- space instrument · magnetometer
- Region
- United States
VALÉORINE Encyclopedia
VALÉORINE documentary reading
Documentary summary
The Lunar Surface Magnetometer (LSM) was a lunar science experiment with the aim of providing insights into the interior of the Moon and how its latent magnetic field interacts with the solar wind. It was deployed on the Moon as part of Apollo 12, Apollo 14 and Apollo 16 missions.
Admitted source layer · organised and presented by VALÉORINE
Reference Check
Propose documentary evidence for Lunar Surface Magnetometer. A contribution is never written directly as fact: identity, source, rights and evidence gates still decide.
Sign in to contribute
World of VALÉORINE
Documentary connections
Only confirmed graph relationships appear here. Images are shown only when their identity and reuse rights both pass the documentary gate.
Documentary evidence
Documentary basis
Authority files
wikidata · Q106511752 · wikipedia · Lunar Surface Magnetometer
In this article
Key facts
Key facts
• Name — Lunar Surface Magnetometer • Acronym — LSM • Notable Experiments — Apollo 12, 14, and 16
Background
Background
Two lunar orbital satellites, Luna 10 and Explorer 35, laid much of the groundwork for a working understanding of the Moon's magnetic field. They established that the Moon has at best little more than a remnant field, and at worst no intrinsic magnetic field at all. Those spacecraft's instruments were not sensitive enough, and too far from the Moon's surface to distinguish between these two possibilities. In addition to these two missions, analysis had been conducted on regolith samples brought back from the Moon by Apollo 11. This analysis established some of the surface materials' magnetic properties.
Instrument
Instrument
A lunar magnetometer experiment had a number of requirements that shaped its capabilities. The instrument needed to be able to operate during the lunar night since it was believed the collection of data from a full lunar rotation would be required. The instrument also needed to be able to perform its own self-calibrations on a regular cadence to account for wide temperature ranges experienced over a long period of time. The instrument's main magnetic measurements were calculated from three Ames fluxgate magnetometer sensor heads, located at the end of three 100 cm booms, positioned perpendicular to each other. Each sensor consists of a flattened toroidal core made of permalloy tape placed inside a wound sensing element. The sensors could be gimballed by motors, controlled either from commands sent from Earth or from commands generated by the Apollo Lunar Surface Experiments Package (ALSEP). These sensors were thermally controlled by thermistors driving the operation of resistance heaters. Alignment and positional measurement of the instrument were provided by two features: the onboard gravimeters that measured the tilt-angle of the magnetometer, and a sundial or "shadowgraph" that enabled astronauts to take an azimuthal reading. The sensor booms were folded to facilitate easier stowage and reduced strain during transportation during flight. When deployed, the three sensors were situated 75 cm above the ground at a 35-degree angle from the surface. To be able to measure the magnetic properties of the Moon as a whole, instrument placement would need to avoid any localised nickel-iron/stoney-iron material. If this material was magnetized or capable of producing localised induction fields, this would result in incorrect readings of the Moon-wide magnetic field. The magnetometer received its power from a 70 watt radioisotope thermoelectric generator that provided power to a number of ALSEP instruments which enabled the LSM to operate both day and night. The instrument would on average use 3 watts of power. Power and a connection to the ALSEP radio transmitter were made available via a 15 m ribbon cable.
Apollo 12
Apollo 12
The first LSM was fully deployed and activated on the Moon at 14:40 UTC November 19, 1969, by astronauts Charles Conrad and Alan Bean, within the Oceanus Procellarum. In the selenographic coordinate system, the instrument was located at 23.35W and 2.97S. The instrument returned the first measurements of a magnetic field intrinsic to the Moon, rather than induced by the solar wind. The instruments detected a field strength of 32-36 nanotesla that was likely produced mainly by a nearby localised magnetised body, between 200 m and 200 km from the magnetometer. This was due to constraints on the lunar magnetic dipole strength due to measurements made simultaneously by Explorer 35, and the ruling out of other artificial sources due to their size. The instrument likely detected a field effect caused by the hydromagnetic flow of the solar wind as it passed the Moon.
Apollo 16
Apollo 16
While the instrument carried on Apollo 16 was similar to that on Apollo 12, its sensors were upgraded with high stability cores developed by the Naval Ordnance Laboratory.
Places
Named by the record
Places
Only places the record itself states, plotted where the house gazetteer settles their coordinates. Nothing is inferred from a name or a nationality.
- United States
Primary material
Documents and archives
authority record
- Wikidata, structured authority record Q106511752: Lunar Surface Magnetometer
General reference · Wikidata
reference work
- “Lunar Surface Magnetometer”, English Wikipedia, consulted as further reading
Reputable secondary · Wikipedia
References
Citations
References
Each reference names the institution holding it, so a reader may go to the document itself.
authority record
Secondary witnessreference work
Secondary witness
Further particulars
Held on the record
Further particulars
Open the remaining particulars
Lunar Surface Magnetometer is recorded as used for space science experiment.
The Encyclopedia exists whether or not anything is for sale. Corrections are recorded rather than overwritten, and every version of this record is kept. Published 16 August 2026.
Elsewhere in Scientific instruments
736 published records in this field, each with its sources named.
- Long Wavelength ArrayTerminology
- Lovell TelescopeTerminology
- Lowell Discovery TelescopeTerminology
- Lunar Crater Radio TelescopeTerminology
- Lurie–Houghton telescopeTerminology
- Magdeburg hemispheresTerminology
- Magellan TelescopesTerminology
- MagnetometerTerminology
Best supported in this field
For owners
Own an object connected with Lunar Surface Magnetometer?
A specialist will read what you send and tell you what the house can establish, what it cannot, and whether the object is suited to sale. There is no charge and no obligation. The object stays with you throughout; nothing is shipped to us unless it is arranged in writing beforehand.