Mostrando entradas con la etiqueta NASA’s Lunar Reconnaissance Orbiter (LRO). Mostrar todas las entradas
Mostrando entradas con la etiqueta NASA’s Lunar Reconnaissance Orbiter (LRO). Mostrar todas las entradas

domingo, 19 de octubre de 2014

NASA : NASA Mission Finds Widespread Evidence of Young Lunar Volcanism

Hola amigos: A VUELO DE UN QUINDE EL BLOG., la Agencia Espacial NASA, nos informa mediante el gráfico que....zona denominada   Maskelyne es uno de los muchos depósitos volcánicos jóvenes recién descubiertas en la Luna.  Llamados Parches irregulares, se cree que estas áreas para ser restos de pequeñas erupciones basálticas que ocurrieron mucho antes de que finalice comúnmente aceptada de vulcanismo lunar, entre 1 y 1,5 mil millones años.
NASA’s Lunar Reconnaissance Orbiter (LRO), ha proporcionado a los investigadores una fuerte evidencia de la actividad volcánica de la Luna se redujo gradualmente en lugar de detenerse abruptamente hace mil millones de años.............................
Decenas de depósitos de roca distintivas observadas por LRO se estima en menos de 100 millones de años. Este período de tiempo corresponde al período Cretácico de la Tierra, el apogeo de los dinosaurios. Algunas áreas pueden ser menos de 50 millones de años. Los detalles del estudio se publican en línea en la edición del domingo de Nature Geoscience........................


Volcanic deposits on the Moon
The feature called Maskelyne is one of many newly discovered young volcanic deposits on the Moon. Called irregular mare patches, these areas are thought to be remnants of small basaltic eruptions that occurred much later than the commonly accepted end of lunar volcanism, 1 to 1.5 billion years ago.
Image Credit: 
NASA/GSFC/Arizona State University
NASA’s Lunar Reconnaissance Orbiter (LRO) has provided researchers strong evidence the moon’s volcanic activity slowed gradually instead of stopping abruptly a billion years ago.
Scores of distinctive rock deposits observed by LRO are estimated to be less than 100 million years old. This time period corresponds to Earth’s Cretaceous period, the heyday of dinosaurs. Some areas may be less than 50 million years old. Details of the study are published online in Sunday’s edition of Nature Geoscience.
“This finding is the kind of science that is literally going to make geologists rewrite the textbooks about the moon,” said John Keller, LRO project scientist at NASA’s Goddard Space Flight Center in Greenbelt, Maryland.
The deposits are scattered across the moon’s dark volcanic plains and are characterized by a mixture of smooth, rounded, shallow mounds next to patches of rough, blocky terrain. Because of this combination of textures, the researchers refer to these unusual areas as irregular mare patches.
The features are too small to be seen from Earth, averaging less than a third of a mile (500 meters) across in their largest dimension. One of the largest, a well-studied area called Ina, was imaged from lunar orbit by Apollo 15 astronauts.
Ina appeared to be a one-of-a-kind feature until researchers from Arizona State University in Tempe and Westfälische Wilhelms-Universität Münster in Germany spotted many similar regions in high-resolution images taken by the two Narrow Angle Cameras that are part of the Lunar Reconnaissance Orbiter Camera, or LROC. The team identified a total of 70 irregular mare patches on the near side of the moon.
The large number of these features and their wide distribution strongly suggest that late-stage volcanic activity was not an anomaly but an important part of the moon's geologic history.
The numbers and sizes of the craters within these areas indicate the deposits are relatively recent. Based on a technique that links such crater measurements to the ages of Apollo and Luna samples, three of the irregular mare patches are thought to be less than 100 million years old, and perhaps less than 50 million years old in the case of Ina. The steep slopes leading down from the smooth rock layers to the rough terrain are consistent with the young age estimates.
In contrast, the volcanic plains surrounding these distinctive regions are attributed to volcanic activity that started about 3 1/2 billion years ago and ended roughly 1 billion years ago. At that point, all volcanic activity on the moon was thought to cease.
Several earlier studies suggested that Ina was quite young and might have formed due to localized volcanic activity. However, in the absence of other similar features, Ina was not considered an indication of widespread volcanism.
The findings have major implications for how warm the moon’s interior is thought to be.
“The existence and age of the irregular mare patches tell us that the lunar mantle had to remain hot enough to provide magma for the small-volume eruptions that created these unusual young features,” said Sarah Braden, a recent Arizona State University graduate and the lead author of the study.
The new information is hard to reconcile with what currently is thought about the temperature of the interior of the moon.
“These young volcanic features are prime targets for future exploration, both robotic and human,” said Mark Robinson, LROC principal investigator at Arizona State University.
LRO is managed by Goddard for NASA’s Science Mission Directorate at NASA Headquarters in Washington. LROC, a system of three cameras, was designed and built by Malin Space Science Systems and is operated by Arizona State University.
To access the complete collection of LROC images, visit
For more information about LRO, visit:
 
NASA
Guillermo Gonzalo Sánchez Achutegui

lunes, 26 de mayo de 2014

NASA : NASA Invites Public to Select Favorite Moon Image for Lunar Orbiter Anniversary Collection

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To celebrate its fifth anniversary, the Lunar Reconnaissance Orbiter mission presents "Moon As Art," a collection of images created using LRO data. NASA presents the top five images to the public, to decide which will be the cover of the "Moon As Art" collection. Voting is open May 23 to June 6.
Image Credit: 
NASA's Goddard Space Flight Center
 

NASA’s Lunar Reconnaissance Orbiter (LRO) will celebrate five years in orbit June 18. To celebrate the anniversary and LRO's many scientific contributions, NASA invites the public to select a favorite orbiter image of the moon for the cover a special image collection.
"'The Moon as Art' collection gives the public the opportunity to see the moon as others have seen it for centuries – as an inspirational muse – but this time from the perspective of being in orbit with a series of 'eyes' that see in different parts of the electromagnetic spectrum," said Brooke Hsu, science education specialist at the Lunar and Planetary Institute/Universities Space Research Association in Greenbelt, Maryland.
The public can vote on the final cover image from five possible candidates selected because of their beauty and/or scientific value by orbiter mission team members. The winning cover image will be announced June 18 with the release of the full Moon as Art collection of 24 images.
Voting begins Friday and will close June 6. The public can vote at:
 
 
The finalist images are titled:
 
-- Starry Night
-- Linne Crater
-- Clerke Crater
-- Diviner North Pole
-- Tycho Central Peak
LRO launched from Florida on June 18, 2009. After a four-day journey, the orbiter successfully entered lunar orbit June 23. In the five years since, LRO has brought the world astounding views of the lunar surface and a plethora of exciting science data.
"LRO has been a remarkable mission with discoveries that have given us insight into solar system history and the inner workings of the moon," said John Keller, LRO project scientist at NASA’s Goddard Space Flight Center in Greenbelt, Maryland. "After five years, LRO continues to make ground breaking discoveries."
LRO is managed by Goddard for the Science Mission Directorate at NASA Headquarters in Washington.
For more information on LRO, visit:
NASA
Guillermo Gonzalo Sánchez Achutegui

sábado, 23 de noviembre de 2013

NASA : NASA Spacecraft Begins Collecting Lunar Atmosphere Data

LADEE Project Manager Update: Commissioning Complete

NASA’s Lunar Atmosphere and Dust Environment Explorer (LADEE) has completed the commissioning phase, and now is ready to begin the mission’s primary science phase. After the successful Orbit Lowering Maneuver (OLM-3) on Nov. 10, LADEE was in an elliptic pre-science orbit. The first six days in this orbit were dedicated to completing the science instrument commissioning, doing opportunistic science measurements in coordination with NASA’s Lunar Reconnaissance Orbiter (LRO) spacecraft, and taking measurements of the impact of the Leonids meteor shower on the lunar environment.
The team was able to conduct preliminary science activities when LADEE’s orbit brought it closest to the surface of the moon and across the sunrise terminator – the transition from night to day. After those science activities LADEE completed the fourth and final block of Lunar Laser Communication Demonstration (LLCD) operations in the commissioning phase.
Everything has been going very well during commissioning activities, even though we sometimes had to deal with unexpected events. For example, on Nov. 19, at the end of an LLCD downlink of spacecraft main memory, LADEE experienced an unexpected processor reboot and came back up in safe mode. A safe mode is a self-protective measure that the spacecraft takes when something unexpected occurs. After re-establishing communications and looking at the data leading up to the event, the engineering team determined that the reboot was triggered by a watchdog timer. These timers are designed to detect when the spacecraft processor stops responding, indicating that something unusual has happened. This could occur for a wide variety of reasons, from a radiation event to a high-priority software overloading LADEE’s onboard computer processor.
Engineers were able to determine the event data was clean leading up to the reboot, so after initial analysis the team decided to bring the spacecraft out of safe mode and continue the LLCD experiments. The spacecraft and LLCD have performed normally since that point.
Once the LLCD experiment phase was completed, the team prepared for and performed the OLM-4 maneuver at 8:53 p.m. PST Nov. 20. This main engine burn lowered the spacecraft into the final science orbit, which varies between 20 and 60 Km above the lunar surface. The varying altitude is caused by the moon’s uneven gravity field. This was the final planned use of the large main engine on the LADEE spacecraft, which has served us extremely well during the mission. The mission now is ready to perform the main science measurements over the next several months.
Butler Hine
Ames Research Center, Moffett Field, Calif.


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Image Credit: NASA/Ames
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NASA Spacecraft Begins Collecting Lunar Atmosphere Data
NASA's Lunar Atmosphere and Dust Environment Explorer (LADEE) is ready to begin collecting science data about the moon.
On Nov. 20, the spacecraft successfully entered its planned orbit around the moon's equator -- a unique position allowing the small probe to make frequent passes from lunar day to lunar night. This will provide a full scope of the changes and processes occurring within the moon's tenuous atmosphere.
LADEE now orbits the moon about every two hours at an altitude of eight to 37 miles (12-60 kilometers) above the moon's surface. For about 100 days, the spacecraft will gather detailed information about the structure and composition of the thin lunar atmosphere and determine whether dust is being lofted into the lunar sky.
"A thorough understanding of the characteristics of our lunar neighbor will help researchers understand other small bodies in the solar system, such as asteroids, Mercury, and the moons of outer planets," said Sarah Noble, LADEE program scientist at NASA Headquarters in Washington.
Scientists also will be able to study the conditions in the atmosphere during lunar sunrise and sunset, where previous crewed and robotic missions detected a mysterious glow of rays and streamers reaching high into the lunar sky.
On Nov. 20, flight controllers in the LADEE Mission Operations Center at NASA's Ames Research Center in Moffett Field, Calif., confirmed LADEE performed a crucial burn of its orbit control system to lower the spacecraft into its optimal position to enable science collection. Mission managers will continuously monitor the spacecraft's altitude and make adjustments as necessary.
"Due to the lumpiness of the moon's gravitational field, LADEE's orbit requires significant maintenance activity with maneuvers taking place as often as every three to five days, or as infrequently as once every two weeks," said Butler Hine, LADEE project manager at Ames. "LADEE will perform regular orbital maintenance maneuvers to keep the spacecraft’s altitude within a safe range above the surface that maximizes the science return."
In addition to science instruments, the spacecraft carried the Lunar Laser Communications Demonstration, NASA's first high-data-rate laser communication system. It is designed to enable satellite communication at rates similar to those of high-speed fiber optic networks on Earth. The system was tested successfully during the commissioning phase of the mission, while LADEE was still at a higher altitude.
LADEE was launched Sept. 6 on a U.S. Air Force Minotaur V, an excess ballistic missile converted into a space launch vehicle and operated by Orbital Sciences Corp. of Dulles, Va. LADEE is the first spacecraft designed, developed, built, integrated and tested at Ames. It also was the first probe launched beyond Earth orbit from NASA's Wallops Flight Facility on the Virginia coast.
NASA's Science Mission Directorate in Washington funds the LADEE mission. Ames manages the overall mission and serves as a base for mission operations and real-time control of the probe. NASA's Goddard Space Flight Center in Greenbelt, Md., manages the science instruments and technology demonstration payload, the science operations center and overall mission support. NASA's Marshall Space Flight Center in Huntsville, Ala., manages LADEE within the Lunar Quest Program Office.
For more information about the LADEE mission, visit:

 NASA
Guillermo Gonzalo Sánchez Achutegui
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