SELENE
SELENE, better known in Japan by its nickname Kaguya, was the second Japanese lunar orbiter spacecraft following the Hiten probe. Produced by the Institute of Space and Astronautical Science and the National Space Development Agency, the spacecraft was launched on September 14, 2007. After orbiting the Moon for a year and eight months, the main orbiter was instructed to impact on the lunar surface near the crater Gill on June 10, 2009.
Nickname
The orbiter's nickname, Kaguya, was selected by the general public. It comes from the name of a lunar princess in the ancient Japanese folktale The Tale of the Bamboo Cutter. After their successful release, its sub-satellites, Rstar and Vstar, were named Okina and Ouna, also derived from characters in the tale.Mission objectives
The main scientific objectives of the mission were to:- Study the origins of the Moon and its geologic evolution
- Obtain information about the lunar surface environment
Launch
[Image:H-IIA F13 launching KAGUYA.jpg|thumb|Launch of H-IIA F13 carrying SELENE (Photo by Narita Masahiro)]SELENE launched on September 14, 2007, at 01:31:01 UTC on an H-IIA carrier rocket from Tanegashima Space Center into a / geocentric parking orbit. The total launch mass was.
The SELENE mission was originally scheduled to launch in 2003, but rocket failures on another mission and technical difficulties delayed the launch until 2007. Launch was planned for August 16, 2007, but was postponed when some electronic components were found to be installed incorrectly.
Lunar operations
On October 3, it entered an initial polar lunar orbit.On October 9, the relay satellite was released into a orbit, while on October 12 the VLBI satellite was released into a one. Finally, by October 19, the orbiter was in a circular orbit. The nominal mission duration was one year plus possible extensions.
On October 31, 2007, Kaguya deployed its Lunar Magnetometer, Lunar Radar Sounder, Earth-looking Upper Atmosphere and Plasma Imager. On December 21, 2007, Kaguya began regular operations after all fifteen observation experiments had been satisfactorily verified.
Kaguya completed the planned operation by the end of October 2008 and began extended operations planned to continue through March 2009. It would then be sent into a circular orbit, and finally to an elliptical one, with a controlled impact occurring by August 2009. Because of a degraded reaction wheel, the plan was changed so that on February 1, 2009, the orbit was lowered to ±,
and impact with lunar surface occurred at 18:25 UTC on June 10, 2009.
Design
The mission featured three separate spacecraft:Main orbiter
Source:- Shape: octagonal prism
- Mass:
- Size: 2.1 x 2.1 x 4.8 m
- Attitude control: Three-axis stabilized
- Power: 3.5 kW
- Mission period: 1 year
- Mission orbit: Circular,
- Inclination: 90 degrees
Okina (small relay satellite)
Okina and Ouna were octagonal prisms to support radio science. Okina relayed radio communications between the orbiter and the Earth when the orbiter was behind the Moon. This allowed, for the first time, the direct Doppler shift measurements neededto precisely map the gravitational field of the lunar farside; previously, the farside gravity field could only be inferred by nearside measurements. The relay satellite impacted the lunar farside near the Mineur D crater at 19:46 JST on February 12, 2009.
- Function: two-way radio science relay, orbiter-earth
- Mass:
- Size: 1.0 x 1.0 x 0.65 m
- Attitude control: spin-stabilized
- Power: 70 W
- Initial orbit:
- Inclination: 90 degrees
Ouna (VLBI satellite)
Ouna used Very Long Baseline Interferometry as a second way to map the Moon's gravity field. It was especially useful at the lunar limb, where the gravitational acceleration is perpendicular to the line of sight to Earth, making Doppler measurements unsuitable.- Function: VLBI radio science
- Mass:
- Size: 1.0 x 1.0 x 0.65 m
- Attitude control: spin-stabilized
- Power: 70 W
- Initial orbit:
- Inclination: 90 degrees
Instruments
SELENE carried 13 scientific instruments "to obtain scientific data of the lunar origin and evolution and to develop the technology for the future lunar exploration":- Terrain camera
- X-ray fluorescence spectrometer
- Lunar magnetometer
- Spectral profiler
- Multi-band imager
- Laser altimeter
- Lunar radar sounder
- Gamma ray spectrometer
- Charged particle spectrometer
- Plasma analyzer
- Upper atmosphere and plasma imager
- Radio wave repeater aboard Okina
- Radio wave source for VLBI aboard Okina and Ouna
JAXA collected names and messages that were carried on SELENE through their "Wish Upon the Moon" campaign. 412,627 names and messages were printed on a sheet measuring 280 mm x 160 mm at 70 μm per character. The sheet was installed under the photovoltaic modules and cooling panels beneath the multi-layered insulation.
Results
Major results include:- Improved lunar global topography maps. This detailed altitude and geological data was provided to Google for free to make Google Moon 3-D.
- Detailed gravity map of the far side of the Moon.
- First optical observation of the permanently shadowed interior of the crater Shackleton at the lunar south pole.
- Evidence of Earth's oxygen being transported to the Moon via magnetospheric ions.