mercredi 18 juin 2014
Titan Flybys Test the Talents of NASA's Cassini Team
NASA - Cassini Mission to Saturn patch.
June 18, 2014
As NASA's Cassini spacecraft zooms toward Saturn's smoggy moon Titan for a targeted flyby on June 18, mission scientists are excitedly hoping to repeat a scientific tour de force that will provide valuable new insights into the nature of the moon's surface and atmosphere.
For Cassini's radio science team, the last flyby of Titan, on May 17, was one of the most scientifically valuable encounters of the spacecraft's current extended mission. The focus of that flyby, designated "T-101," was on using radio signals to explore the physical nature of Titan's vast northern seas and probe the high northern regions of its substantial atmosphere.
The Cassini team hopes to replicate the technical success of that flyby during the T-102 encounter, slated for June 18, during which the spacecraft will attempt similar measurements of Titan. During closest approach, the spacecraft will be just 2,274 miles (3,659 kilometers) above the surface of the moon while travelling at 13,000 miles per hour (5.6 kilometers per second).
During the upcoming flyby, if all goes well as before, Cassini's radio science subsystem will bounce signals off the surface of Titan, toward Earth, where they will be received by the ground stations of NASA's Deep Space Network. This sort of observation is known as a bistatic scattering experiment and its results can yield clues to help answer a variety of questions about large areas of Titan's surface: Are they solid, slushy or liquid? Are they reflective? What might they be made of?
During the May encounter, Cassini beamed radio signals over the two largest bodies of liquid on Titan, seas named Ligeia Mare and Kraken Mare. During that first attempt, scientists could not be certain the signals would successfully bounce off the lakes to be received on Earth. They were thrilled when ground stations received specular reflections -- essentially the glint -- of the radio frequencies as they ricocheted off Titan.
Image above: Cassini will attempt to bounce signals off of Saturn's moon Titan once more during a flyby on June 18, 2014, revealing important details about the moon's surface. Image credit: NASA/JPL-Caltech.
"We held our breath as Cassini turned to beam its radio signals at the lakes," said Essam Marouf, a member of the Cassini radio science team of San Jose State University in California. "We knew we were getting good quality data when we saw clear echoes from Titan's surface. It was thrilling."
A second technical accomplishment -- an experiment to send precision-tuned radio frequencies through Titan's atmosphere -- also makes the May and June flybys special. The experiment, known as a radio occultation, provides information about how temperatures vary by altitude in Titan's atmosphere. Preparing for these experiments tested just how thoroughly the Cassini team has come to understand the structure of Titan's atmosphere during nearly a decade of study by the mission.
During this type of radio occultation, a signal is beamed from Earth through the atmosphere of Titan toward the Cassini spacecraft, which responds back to Earth with an identical signal. Information about Titan is imprinted in the signal as it passes through the moon's atmosphere, encountering differences in temperature and density. The trick is that the transmitted signal must be varied during the experiment so that it remains nearly constant when received by the spacecraft.
In order to give the occultation experiments any chance of success, the team has to account for not only the relative motions of the spacecraft and the transmitting antennas on the rotating planet Earth, but also the ways the signal is bent by different layers in Titan's atmosphere.
While this procedure has been used successfully for several Saturn occultations in the past two years, it had not yet been tried at Titan. And since the Titan occultations last just a few minutes, the team was concerned about how quickly the frequency lockup between ground and spacecraft could be established, if at all. For comparison, NASA's Magellan mission tried the technique at Venus in the 1990s, without success.
As they waited for signs of confirmation during the May encounter, the team saw the signal lock occur in only a few seconds, indicating that their predictions were spot-on. Data on Titan's atmosphere flowed in, adding new information to the mission's campaign to monitor the changing of the seasons on this alien moon.
"This was like trying to hit a hole-in-one in golf, except that the hole is close to a billion miles away, and moving," said Earl Maize, Cassini project manager at NASA's Jet Propulsion Laboratory in Pasadena, California. "This was our first attempt to precisely predict and compensate for the effect of Titan's atmosphere on the uplinked radio signal from Earth, and it worked to perfection."
The Cassini-Huygens mission is a cooperative project of NASA, the European Space Agency and the Italian Space Agency. JPL, a division of the California Institute of Technology, Pasadena, manages the mission for NASA's Science Mission Directorate in Washington. The radio science team is based at JPL. NASA's Deep Space Network is also managed by JPL.
More information about Cassini is available at the following sites: http://www.nasa.gov/cassini and http://saturn.jpl.nasa.gov
Image (mentioned), Text, Credits: NASA / JPL / Preston Dyches.
Greetings, Orbiter.ch
Lunar Reconnaissance Orbiter's View of Tycho Central Peak
NASA - Lunar Reconnaissance Orbiter (LRO) patch.
June 18, 2014
Today, the Lunar Reconnaissance Orbiter (LRO) celebrates its fifth anniversary in space. LRO launched from Florida on June 18, 2009. After a four-day journey, the orbiter successfully entered lunar orbit on June 23. In the succeeding five years, LRO has continued to shape our view of our nearest celestial neighbor. LRO data has shown us the tracks and equipment left behind from the Apollo astronauts, created the most precise map of the lunar surface, discovered the coldest known temperatures in the solar system, mapped the distribution of hydrogen and possibly water mixed in the lunar soil, identified craters and many other exciting science discoveries.
Tycho crater's central peak complex
In honor of the fifth anniversary, the LRO project kicked off the Moon as Art Campaign. The public was asked to select a favorite orbiter image of the moon for the cover of a special image collection. After two weeks of voting, the public has selected this image of Tycho Central Peak as its favorite moon image. The stunningly beautiful Tycho Central Peak rests inside an impact crater and has a boulder over 100 meters wide (about 328 feet) at its summit. It showcases a breathtaking view of the lunar landscape.
Tycho crater's central peak complex, shown here, is about 9.3 miles (15 km) wide, left to right (southeast to northwest in this view). A very popular target with amateur astronomers, Tycho is about 51 miles (82 km) in diameter. The central peak's summit is 1.24 miles (2 km) above the crater floor.
Read more: NASA LRO's Moon As Art Collection Is Revealed: http://www.nasa.gov/content/goddard/nasa-lro-s-moon-as-art-collection-is-revealed/
For more information about Lunar Reconnaissance Orbiter (LRO), visit: http://www.nasa.gov/mission_pages/LRO/main/
Image, Text, Credits: NASA/Goddard/Arizona State University.
Cheers, Orbiter.ch
At the 57th year died V. A. Popovkin
ROSCOSMOS logo.
June 18, 2014
June 18, 2014 at the 57th year of life after a long illness died Vladimir Popovkin.
The whole life of Vladimir Alexandrovich was associated with service in the armed forces and the cosmos. He was born in Dushanbe September 25, 1957. In 1979 he graduated from the Military Engineering Institute named after AF Mozhaysky in Leningrad and began serving at the Baikonur Cosmodrome, which has gone from the department to the chief engineer of the starting team, "Gagarin's start." In 1986 he graduated from the Military Academy Dzerzhinsky with honors and continued to serve in the Office of the Chief of space means the Ministry of Defense.
Vladimir Alexandrovich Popovkin
In 2001 he became Chief of Staff of the Space Forces and First Deputy Commander of the Space Forces, and in July 2008 - Chief of Armaments of the Armed Forces and Deputy Defense Minister.
Since March 2004 he was appointed Commander of the Space Forces.
In April 2011 V. A. Popovkin appointed head of the Federal Space Agency of Russia. In this position, Vladimir worked until the fall of 2013.
Vladimir was awarded state and departmental awards.
The team of the Federal Space Agency expresses its deepest condolences to the family of Vladimir Alexandrovich. Cherished memory.
ROSCOSMOS Press Release: http://www.federalspace.ru/20699/
Image, Text, Credits: Roscosmos press service / ROSCOSMOS / Translation: Orbiter.ch Aerospace.
Condolences, Orbiter.ch
mardi 17 juin 2014
New molecules around old stars
ESA - Herschel Mission patch / ESA - Hubble Space Telescope patch..
17 June 2014
Using ESA’s Herschel space observatory, astronomers have discovered that a molecule vital for creating water exists in the burning embers of dying Sun-like stars.
When low- to middleweight stars like our Sun approach the end of their lives, they eventually become dense, white dwarf stars. In doing so, they cast off their outer layers of dust and gas into space, creating a kaleidoscope of intricate patterns known as planetary nebulas.
Water-building molecule in Helix Nebula
These actually have nothing to do with planets, but were named in the late 18th century by astronomer William Herschel, because they appeared as fuzzy circular objects through his telescope, somewhat like the planets in our Solar System.
Over two centuries later, planetary nebulas studied with William Herschel’s namesake, the Herschel space observatory, have yielded a surprising discovery.
Like the dramatic supernova explosions of weightier stars, the death cries of the stars responsible for planetary nebulas also enrich the local interstellar environment with elements from which the next generations of stars are born.
While supernovas are capable of forging the heaviest elements, planetary nebulas contain a large proportion of the lighter ‘elements of life’ such as carbon, nitrogen, and oxygen, made by nuclear fusion in the parent star.
A star like the Sun steadily burns hydrogen in its core for billions of years. But once the fuel begins to run out, the central star swells into a red giant, becoming unstable and shedding its outer layers to form a planetary nebula.
Water-building molecule in Ring Nebula
The remaining core of the star eventually becomes a hot white dwarf pouring out ultraviolet radiation into its surroundings.
This intense radiation may destroy molecules that had previously been ejected by the star and that are bound up in the clumps or rings of material seen in the periphery of planetary nebulas.
The harsh radiation was also assumed to restrict the formation of new molecules in those regions.
But in two separate studies using Herschel astronomers have discovered that a molecule vital to the formation of water seems to rather like this harsh environment, and perhaps even depends upon it to form. The molecule, known as OH+, is a positively charged combination of single oxygen and hydrogen atoms.
In one study, led by Dr Isabel Aleman of the University of Leiden, the Netherlands, 11 planetary nebulas were analysed and the molecule was found in just three.
What links the three is that they host the hottest stars, with temperatures exceeding 100 000ºC.
“We think that a critical clue is in the presence of the dense clumps of gas and dust, which are illuminated by UV and X-ray radiation emitted by the hot central star,” says Dr Aleman.
“This high-energy radiation interacts with the clumps to trigger chemical reactions that leads to the formation of the molecules.”
Herschel observations of Helix Nebula
Meanwhile, another study, led by Dr Mireya Etxaluze of the Instituto de Ciencia de los Materiales de Madrid, Spain, focused on the Helix Nebula, one of the nearest planetary nebulas to our Solar System, at a distance of 700 light years.
The central star is about half the mass of our Sun, but has a far higher temperature of about 120 000ºC. The expelled shells of the star, which in optical images appear reminiscent of a human eye, are known to contain a rich variety of molecules.
Herschel mapped the presence of the crucial molecule across the Helix Nebula, and found it to be most abundant in locations where carbon monoxide molecules, previously ejected by the star, are most likely to be destroyed by the strong UV radiation.
Once oxygen atoms have been liberated from the carbon monoxide, they are available to make the oxygen–hydrogen molecules, further bolstering the hypothesis that the UV radiation may be promoting their creation.
The two studies are the first to identify in planetary nebulas this critical molecule needed for the formation of water, although it remains to be seen if the conditions would actually allow water formation to proceed.
“The proximity of the Helix Nebula means we have a natural laboratory on our cosmic doorstep to study in more detail the chemistry of these objects and their role in recycling molecules through the interstellar medium,” says Dr Etxaluze.
“Herschel has traced water across the Universe, from star-forming clouds to the asteroid belt in our own Solar System,” says Göran Pilbratt, ESA’s Herschel project scientist.
“Now we have even found that stars like our Sun could contribute to the formation of water in the Universe, even as they are in their death throes.”
“Herschel planetary nebula survey (HerPlaNS). First detection of OH+ in planetary nebulae,” by I. Aleman et al., and “Herschel spectral-mapping of the Helix Nebula (NGC 7293): extended CO photodissociation and OH+ emission,” by M. Etxaluze et al., are published in Astronomy & Astrophysics.
HerPlaNS (The Herschel Planetary Nebulae Survey) is a survey of 11 planetary nebulas aiming the study the formation and evolution of the circumstellar material by tracing the dust and gas components. The HerPlaNS team is led by Toshiya Ueta from the University of Denver.
The MESS (Mass loss of Evolved StarS) consortium studies a wide variety of evolved stars (including planetary nebulas) to better understand the mass loss in these objects, the dust and gas chemistry in the ejected material, and the processes shaping the nebulae. The MESS consortium is led by Martin Groenewegen (Royal Observatory of Belgium) and the study of planetary nebulas within the group is led by Peter van Hoof (Royal Observatory of Belgium).
More informations:
Herschel highlights:
http://www.esa.int/Our_Activities/Space_Science/Herschel/Herschel_highlights
Herschel overview: http://www.esa.int/Our_Activities/Space_Science/Herschel_overview
Herschel in depth: http://sci.esa.int/science-e/www/area/index.cfm?fareaid=16
Herschel Science Centre: http://herschel.esac.esa.int/
Images, Text, Credits: Hubble image: NASA/ESA/C. Robert O’Dell (Vanderbilt University), M. Meixner & P. McCullough (STScI); Herschel image: ESA/Herschel/SPIRE/MESS Consortium/M. Etxaluze et al./HerPlaNS survey/Herschel data: ESA/Herschel/PACS & SPIRE./I. Aleman et al.
Best regards, Orbiter.ch
lundi 16 juin 2014
On ISS, Spacesuit Checks Before Thursday Spacewalk
ISS - Expedition 40 Mission patch.
June 16, 2014
The International Space Station’s six residents were preparing for Thursday’s spacewalk while continuing more science and maintenance aboard the orbital laboratory.
Cosmonauts Alexander Skvortsov and Oleg Artemyev began Monday morning setting up their Russian Orlan spacesuits. NASA astronaut Reid Wiseman assisted the duo installing U.S. lights and television cameras on the suits. The cosmonaut pair later checked the suits’ telemetry and communications gear.
The spacewalkers will exit the Pirs docking compartment Thursday at 9:50 a.m. EDT for about six hours and 30 minutes of work outside the Russian segment of the station. They will install an antenna, swab samples from a window on the Zvezda service module and switch out science experiment gear.
Image above: Astronaut Reid Wiseman talks about views of Earth and tweeting from space with reporters from Baltimore, Maryland and the Weather Channel. Image Credit: NASA TV.
After the suit work, Wiseman subjected himself to medical analysis as he wore a portable digital electrocardiograph to measure his cardiac autonomic function for 48 hours. Commander Steve Swanson then assisted Wiseman with his periodic health evaluation.
Read more about Biological Rhythms 48: http://www.nasa.gov/mission_pages/station/research/experiments/621.html
In the afternoon, Wiseman logged what he ate for lunch then collected his blood and urine samples for stowage in a science freezer. He then turned his attention to a pair of U.S. spacesuits troubleshooting their lithium-ion battery chargers.
German astronaut Alexander Gerst, from the European Space Agency, worked throughout the day on the Burning and Suppression of Solids combustion study. He conducted two flame tests inside the Destiny lab module’s Microgravity Science Glovebox with assistance from investigators on the ground. The experiment seeks to provide insight on how flames burn in space compared to Earth which may provide fire safety benefits aboard future spacecraft.
Image above: Astronaut Alexander Gerst works with samples and hardware for the Burning and Suppression of Solids experiment. Image Credit: NASA TV.
Read more about Burning and Suppression of Solids: http://www.nasa.gov/mission_pages/station/research/experiments/1262.html
Swanson collected water samples from a potable water dispenser for inflight analysis after a morning exercise session. He then removed and replaced an air hose and liquid indicator from the Tranquility node’s bathroom, or Waste and Hygiene Compartment before lunchtime.
Later the commander performed some maintenance work on the Advanced Colloids Experiment cleaning the work area after an experiment sample was broken during an earlier mixing session. After that work, Swanson was back inside the Tranquility node replacing a heat exchanger and purging a Sabatier accumulator.
Flight Engineer Max Suraev began his morning readying the Pirs docking compartment for his spacewalking crewmates. Afterward he assisted Skvortsov and Artemyev with Orlan suit emergency tasks in the unlikely event of a pressure leak inside Pirs. Later he looked down on Earth for the Uragan investigation photographing natural and man-made conditions to help scientists forecast potential disasters.
Read more about Uragan: http://www.nasa.gov/mission_pages/station/research/experiments/538.html
For more information about the International Space Station (ISS), visit: http://www.nasa.gov/mission_pages/station/main/index.html
Images (mentioned), Text, Credit: NASA.
Greetings, Orbiter.ch
Spurting Plasma
NASA - Solar Dynamics Observatory (SDO) patch.
June 16, 2014
Spurting Plasma on the Sun
A stream of plasma burst out from the sun, but since it lacked enough force to break away, most of it fell back into the sun (May 27, 2014). The video, seen in a combination of two wavelengths of extreme ultraviolet light, covers a little over two hours. This eruption was minor and such events occur almost every day on the sun and suggest the kind of dynamic activity being driven by powerful magnetic forces near the sun's surface.
Spurting Plasma on the Sun
For more information about the Solar Dynamics Observatory (SDO), visit:
http://www.nasa.gov/mission_pages/sdo/main/ and http://sdo.gsfc.nasa.gov/
Image, Video, Text, Credit: NASA/Solar Dynamics Observatory (SDO).
Cheers, Orbiter.ch
NASA Hubble to Begin Search Beyond Pluto for a New Horizons Mission Target

NASA - Hubble Space Telescope patch / NASA - New Horizons Mission logo.
June 16, 2014
After careful consideration and analysis, the Hubble Space Telescope Time Allocation Committee has recommended using Hubble to search for an object the Pluto-bound NASA New Horizons mission could visit after its flyby of Pluto in July 2015.
The planned search will involve targeting a small area of sky in search of a Kuiper Belt object (KBO) for the outbound spacecraft to visit. The Kuiper Belt is a vast debris field of icy bodies left over from the solar system's formation 4.6 billion years ago. A KBO has never been seen up close because the belt is so far from the sun, stretching out to a distance of 5 billion miles into a never-before-visited frontier of the solar system.
"I am pleased that our science peer-review process arrived at a consensus as to how to effectively use Hubble's unique capabilities to support the science goals of the New Horizons mission," said Matt Mountain, director of the Space Telescope Science Institute (STScI) in Baltimore, Maryland.
Fully carrying out the KBO search is contingent on the results from a pilot observation using Hubble data.
The space telescope will scan an area of sky in the direction of the constellation Sagittarius to try and identify any objects orbiting within the Kuiper Belt. To discriminate between a foreground KBO and the clutter of background stars in Sagittarius, the telescope will turn at the predicted rate that KBOs are moving against the background stars. In the resulting images, the stars will be streaked, but any KBOs should appear as pinpoint objects.
If the test observation identifies at least two KBOs of a specified brightness it will demonstrate statistically that Hubble has a chance of finding an appropriate KBO for New Horizons to visit. At that point, an additional allotment of observing time will continue the search across a field of view roughly the angular size of the full moon.
Image above: This is an artist's rendering of the New Horizons spacecraft encountering a Kuiper Belt object — a city-sized icy relic left over from the birth of our solar system. The sun, more than 4.1 billion miles (6.7 billion kilometers) away, shines as a bright star embedded in the glow of the zodiacal dust cloud. Jupiter and Neptune are visible as orange and blue "stars" to the right of the sun. Image Credit: JHUAPL/SwRI.
Astronomers around the world apply for observing time on the Hubble Space Telescope. Competition for time on the telescope is extremely intense and the requested observing time significantly exceeds the observing time available in a given year. Proposals must address significant astronomical questions that can only be addressed with Hubble's unique capabilities, and are beyond the capabilities of ground-based telescopes. The proposals are peer reviewed annually by an expert committee, which looks for the best possible science that can be conducted by Hubble and recommends to the Space Telescope Science Institute director a balanced program of small, medium, and large investigations.
Though Hubble is powerful enough to see galaxies near the horizon of the universe, finding a KBO is a challenging needle-in-haystack search. A typical KBO along the New Horizons trajectory may be no larger than Manhattan Island and as black as charcoal.
Even before the launch of New Horizons in 2006, Hubble has provided consistent support for this edge-of-the-solar system mission. Hubble was used to discover four small moons orbiting Pluto and its binary companion object Charon, providing new targets to enhance the mission’s scientific return. And Hubble has provided the most sensitive search yet for potentially hazardous dust rings around the Pluto. Hubble also has made a detailed map of the dwarf planet's surface, which astronomers are using to plan New Horizon's close-up reconnaissance photos.
In addition to Pluto exploration, recent Hubble solar system observations have discovered a new satellite around Neptune, probed the magnetospheres of the gas-giant planets, found circumstantial evidence for oceans on Europa, and uncovered several bizarre cases of asteroids disintegrating before our eyes. Hubble has supported numerous NASA Mars missions by monitoring the Red Planet's seasonal atmospheric changes. Hubble has made complementary observations in support of the Dawn asteroid mission, and comet flybys. In July 1994, Hubble documented the never-before-seen string of comet collisions with Jupiter that resulted from the tidal breakup of comet Shoemaker-Levy 9.
"The planned search for a suitable target for New Horizons further demonstrates how Hubble is effectively being used to support humankind's initial reconnaissance of the solar system," said Mountain. "Likewise, it is also a preview of how the powerful capabilities of the upcoming James Webb Space Telescope will further bolster planetary science. We are excited by the potential of both observatories for ongoing solar system exploration and discovery."
For images and more information about Hubble, visit: http://www.nasa.gov/hubble and http://hubblesite.org/news/2014/29
For more information about New Horizons mission, visit: http://www.nasa.gov/mission_pages/newhorizons/main/
Image (mentioned), Text, Credits: NASA / JPL / J.D. Harrington.
Greetings, Orbiter.ch
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