mardi 21 octobre 2014

NASA's Fermi Satellite Finds Hints of Starquakes in Magnetar 'Storm'











NASA - Fermi Gamma-ray Space Telescope logo.

October 21, 2014

NASA's Fermi Gamma-ray Space Telescope detected a rapid-fire "storm" of high-energy blasts from a highly magnetized neutron star, also called a magnetar, on Jan. 22, 2009. Now astronomers analyzing this data have discovered underlying signals related to seismic waves rippling throughout the magnetar.


Image above: A rupture in the crust of a highly magnetized neutron star, shown here in an artist's rendering, can trigger high-energy eruptions. Fermi observations of these blasts include information on how the star's surface twists and vibrates, providing new insights into what lies beneath. Image Credit: NASA's Goddard Space Flight Center/S. Wiessinger.

Such signals were first identified during the fadeout of rare giant flares produced by magnetars. Over the past 40 years, giant flares have been observed just three times -- in 1979, 1998 and 2004 -- and signals related to starquakes, which set the neutron stars ringing like a bell, were identified only in the two most recent events.

"Fermi's Gamma-ray Burst Monitor (GBM) has captured the same evidence from smaller and much more frequent eruptions called bursts, opening up the potential for a wealth of new data to help us understand how neutron stars are put together," said Anna Watts, an astrophysicist at the University of Amsterdam in the Netherlands and co-author of a new study about the burst storm. "It turns out that Fermi's GBM is the perfect tool for this work."

Soft Gamma-Ray Repeater Light Echoes Captured by Swift Satellite

Video above: In the midst of SGR J1550-5418's 2009 burst storm, Swift's X-Ray Telescope captured an expanding halo produced by the magnetar's brightest bursts. The rings formed as X-rays from the brightest bursts scattered off of intervening dust clouds. Clouds closer to Earth produced larger rings. Video Credit: NASA/Swift/Jules Halpern, Columbia University.

Neutron stars are the densest, most magnetic and fastest-spinning objects in the universe that scientists can observe directly. Each one is the crushed core of a massive star that ran out of fuel, collapsed under its own weight, and exploded as a supernova. A neutron star packs the equivalent mass of half-a-million Earths into a sphere about 12 miles across, roughly the length of Manhattan Island in New York City.

While typical neutron stars possess magnetic fields trillions of times stronger than Earth's, the eruptive activity observed from magnetars requires fields 1,000 times stronger still. To date, astronomers have confirmed only 23 magnetars.

Because a neutron star's solid crust is locked to its intense magnetic field, a disruption of one immediately affects the other. A fracture in the crust will lead to a reshuffling of the magnetic field, or a sudden reorganization of the magnetic field may instead crack the surface. Either way, the changes trigger a sudden release of stored energy via powerful bursts that vibrate the crust, a motion that becomes imprinted on the burst’s gamma-ray and X-ray signals.

It takes an incredible amount of energy to convulse a neutron star. The closest comparison on Earth is the 9.5-magnitude Chilean earthquake of 1960, which ranks as the most powerful ever recorded on the standard scale used by seismologists. On that scale, said Watts, a starquake associated with a magnetar giant flare would reach magnitude 23.

The 2009 burst storm came from SGR J1550−5418, an object discovered by NASA's Einstein Observatory, which operated from 1978 to 1981. Located about 15,000 light-years away in the constellation Norma, the magnetar was quiet until October 2008, when it entered a period of eruptive activity that ended in April 2009. At times, the object produced hundreds of bursts in as little as 20 minutes, and the most intense explosions emitted more total energy than the sun does in 20 years. High-energy instruments on many spacecraft, including NASA's Swift and Rossi X-ray Timing Explorer, detected hundreds of gamma-ray and X-ray blasts.


Image above: This image of NASA's Fermi Gamma-ray Space Telescope, shown here in May 2008 being readied for launch, highlights the spacecraft's instruments. The Gamma-ray Burst Monitor (GBM) is an array of 14 crystal detectors sensitive to short-lived gamma-ray blasts. Image Credit: NASA/Jim Grossmann.

Speaking at the Fifth Fermi International Symposium in Nagoya, Japan, on Oct. 21, Watts said the new study examined 263 individual bursts detected by Fermi's GBM and confirms vibrations in the frequency ranges previously seen in giant flares. "We think these are likely twisting oscillations of the star where the crust and the core, bound by the super-strong magnetic field, are vibrating together," she explained. "We also found, in a single burst, an oscillation at a frequency never seen before and which we still do not understand."

A key element of the research is a new analysis technique developed by University of Amsterdam researcher Daniela Huppenkothen. Normally scientists search for oscillations in high-energy data by looking for variations aligned to a particular frequency. Such methods are best suited for finding a strong signal with little competition rather than a faint signal immersed in a bright and rapidly changing environment, such as a burst.

Huppenkothen likens the problem to detecting ripples from a stone tossed into a quiet pond. "Now imagine you're in the middle of the North Atlantic during a storm, searching for those ripples amidst huge waves in a churning sea," she explained. "Our old methods really weren't appropriate for this, but I have in effect developed a way of accounting for the rough sea so we can find ripples even in stormy conditions."

A paper describing the research, which was led by Huppenkothen, appeared in the June 1 edition of The Astrophysical Journal.

While there are many efforts to describe the interiors of neutron stars, scientists lack enough observational detail to choose between differing models. Neutron stars reach densities far beyond the reach of laboratories and their interiors may exceed the density of an atomic nucleus by as much as 10 times. Knowing more about how bursts shake up these stars will give theorists an important new window into understanding their internal structure.

"Right now," added Watts, "we are waiting for more bursts -- and if we're lucky, a giant flare -- to take advantage of GBM's excellent capabilities."

Related Links:

Download HD video and related imagery from NASA Goddard's Scientific Visualization Studio: http://svs.gsfc.nasa.gov/cgi-bin/details.cgi?aid=11713

Paper: "Quasi-Periodic Oscillations in Short Recurring Bursts of the Soft-Gamma Repeater J1550-5418": http://iopscience.iop.org/0004-637X/787/2/128/article

Paper: "Quasi-Periodic Oscillations and Broadband Variability in Short Magnetar Bursts": http://iopscience.iop.org/0004-637X/768/1/87/

NASA's Swift, Fermi Probe Fireworks From a Flaring Gamma-Ray Star (02.10.2009): http://www.nasa.gov/mission_pages/swift/bursts/gammaray_fireworks.html

McGill Online Magnetar Catalog: http://www.physics.mcgill.ca/~pulsar/magnetar/main.html

"NASA's Swift Reveals New Phenomenon in a Neutron Star" (05.09.2013): http://orbiterchspacenews.blogspot.ch/2013/05/nasas-swift-reveals-new-phenomenon-in.html

Magnetars: Special Stars With That Attractive Charm: http://imagine.gsfc.nasa.gov/docs/features/exhibit/tenyear/magnetars.html

"Cosmic Explosion Among the Brightest in Recorded History" (02.18.2005): http://www.nasa.gov/vision/universe/watchtheskies/swift_nsu_0205.html

Images (mentioned), Video (mentioned), Text, Credits: NASA's Goddard Space Flight Center / Francis Reddy.

Best regards, Orbiter.ch

Advanced Science Aboard Station During Final Spacewalk Preps












ISS - Expedition 41 Mission patch.

October 21, 2014

The Expedition 41 crew is wrapping up preparations before Wednesday’s six hour Russian spacewalk and cleaning up after two U.S. spacewalks earlier this month. The station residents also pressed ahead with ongoing station maintenance and advanced microgravity science.

Commander Max Suraev and Flight Engineer Alexander Samokutyaev are scheduled to open the Pirs docking compartment hatch to the vacuum of space Wednesday at 9:24 a.m. EDT to begin the third spacewalk for Expedition 41.

Read more about the Russian spacewalk: http://www.nasa.gov/press/2014/october/nasa-tv-to-air-russian-spacewalk-from-international-space-station/

The spacewalkers will work outside the station’s Russian segment to jettison science and communications gear no longer being used. They will also remove a protective cover from a biological exposure experiment, collect samples of particulate matter on the Pirs docking compartment and photograph the station’s Russian exterior.


Image above: Cosmonauts Maxim Suraev and Alexander Samokutyaev will conduct Wednesday's spacewalk. Image Credit: NASA TV.

The duo reviewed their spacewalk plan one final time and completed the setup of the Pirs airlock. German astronaut Alexander Gerst helped ready the Russian segment for the spacewalk when he closed the hatch to Europe’s Automated Transfer Vehicle-5 which is docked to the Zvezda service module.

Gerst who is from the European Space Agency started his day in Japan’s Kibo laboratory replacing the water in the station’s fish tank, also known as the Aquatic Habitat. The tank supports observations of Zebrafish so scientists can study how microgravity affects muscles. Gerst then moved on to a vision test checking his visual acuity, visual field and contrast sensitivity.

Read about the Zebrafish Muscle study: http://www.nasa.gov/mission_pages/station/research/experiments/65.html

NASA astronauts Barry Wilmore and Reid Wiseman worked in the Quest airlock cleaning up after a pair of spacewalks conducted over two weeks. They took turns scrubbing the cooling loops on the U.S. spacesuits and collecting water samples from the loops.


Image above: Hurricane Gonzalo was pictured on Oct. 16, 2014 and hit Bermuda on the following day as a powerful Category 2 storm. Image Credit:
NASA TV.

Wilmore also had time for some medical science work. He collected blood and urine samples and stowed them inside a science freezer for later analysis. Wiseman worked on plumbing in the Waste and Hygiene Compartment. He also assisted Gerst during his vision test checking his intraocular pressure for the Ocular Health study.

Read more about Ocular Health: http://www.nasa.gov/mission_pages/station/research/experiments/204.html

Cosmonaut Elena Serova worked throughout Tuesday helping Suraev and Samokutyaev get ready for Russia’s 40th spacewalk at the International Space Station. She also continued more dust filter replacement and fan screen cleaning activities.

The next trio to live and work at the space station are at the Baikonur Cosmodrome in Kazakhstan preparing for final qualification exams. Expedition 42/43 crew members Terry Virts, Anton Shkaplerov and Samantha Cristoforetti are due to launch Nov. 23 for a six hour ride to the orbital laboratory.

For more information about the International Space Station (ISS), visit: http://www.nasa.gov/mission_pages/station/main/index.html

Images (mentioned), Text, Credits: NASA.

Greetings, Orbiter.ch

Hubble Sees Turquoise-Tinted Plumes in Large Magellanic Cloud












ESA - Hubble Space Telescope patch.

October 21, 2014


The brightly glowing plumes seen in this image are reminiscent of an underwater scene, with turquoise-tinted currents and nebulous strands reaching out into the surroundings.

However, this is no ocean. This image actually shows part of the Large Magellanic Cloud (LMC), a small nearby galaxy that orbits our galaxy, the Milky Way, and appears as a blurred blob in our skies. The NASA/European Space Agency (ESA) Hubble Space Telescope has peeked many times into this galaxy, releasing stunning images of the whirling clouds of gas and sparkling stars.

This image shows part of the Tarantula Nebula's outskirts. This famously beautiful nebula, located within the LMC, is a frequent target for Hubble.

In most images of the LMC the color is completely different to that seen here. This is because, in this new image, a different set of filters was used. The customary R filter, which selects the red light, was replaced by a filter letting through the near-infrared light. In traditional images, the hydrogen gas appears pink because it shines most brightly in the red. Here however, other less prominent emission lines dominate in the blue and green filters.

Hubble orbiting Earth

This data is part of the Archival Pure Parallel Project (APPP), a project that gathered together and processed over 1,000 images taken using Hubble’s Wide Field Planetary Camera 2, obtained in parallel with other Hubble instruments. Much of the data in the project could be used to study a wide range of astronomical topics, including gravitational lensing and cosmic shear, exploring distant star-forming galaxies, supplementing observations in other wavelength ranges with optical data, and examining star populations from stellar heavyweights all the way down to solar-mass stars.

The Hubble Space Telescope is a project of international cooperation between NASA and the European Space Agency. NASA's Goddard Space Flight Center in Greenbelt, Maryland, manages the telescope. The Space Telescope Science Institute (STScI) in Baltimore conducts Hubble science operations. STScI is operated for NASA by the Association of Universities for Research in Astronomy, Inc., in Washington.

Related links:

Archival Pure Parallel Project (APPP): http://archive.stsci.edu/prepds/appp/

Hubble’s Wide Field Planetary Camera 2: http://spacetelescope.org/about/general/instruments/wfpc2/

For images and more information about Hubble, visit: http://www.nasa.gov/hubble and http://hubblesite.org/ and http://www.spacetelescope.org/

Image, Video. Text, Credits: ESA/Hubble & NASA: acknowledgement: Josh Barrington.

Cheers, Orbiter.ch

Proton-M launch Express AM6 on orbit












ROSCOSMOS logo.

October 21, 2014

Proton-M carrying Express-AM6 satellite on the launch-pad

Russia’s Express-AM6 telecommunications satellite blast off atop a Proton-M launch vehicle with its Breeze-M upper stage. The launched on schedule from its traditional home at the Baikonur Cosmodrome in Kazakhstan at 15:09 UTC.

 Launch of Proton-M with the spacecraft Express-AM6

The Express-AM6 mission is part of a largescale national program to upgrade the Russian orbital communications constellation that was initiated with the launch of Express-AM5 in December 2013.

Another pair of the Express satellites – Express-AT1 and AT2 – was deployed and made operational in the first half of 2014. Russia plans to launch Express-AM7, AM8 and AMU1 in the coming years.

Proton-M launch animation

Express-AM6 is Russia’s second unpressurized heavy telecommunications satellite carrying a large number of transponders and antennas.

Positioned in geostationary orbit at 53 degrees East, the Express-AM6 satellite will beam digital broadcasting, fixed and mobile communications, including presidential and governmental packages, high-speed Internet services and the like.

Express-AM6 satellite

Like its predecessor, AM6 is based on the Express-2000 satellite platform designed by Reshetnev ISS.

The platform supplies the craft’s payload with electric power, maintains the necessary temperature, keeps the satellite stationed in orbit, performs orbital maneuvers, exchanges telemetry and commands, and supports other functions.

Express-2000 spacecraft are Russia’s most powerful telecommunications satellites characterized by advanced technical specifications, including:

- 15 kW of power, of which 13 kW can be allotted to the payload;
- 15-year lifetime (fueled for 17 years);
- 1100-kg payload.

Express-AM6 Major Specifications


SatBeams - Express AM6 (Ekspress AM6, EAM6) satellite technical details, its charts, beams and call sign: http://www.satbeams.com/satellites?id=2504

ROSCOSMOS Press Release: http://www.federalspace.ru/21031/

Images, Animation, Video, Text, Credits: ROSCOSMOS / ROSCOSMOS TV / Alenia Space / ILS / Orbiter.ch Aerospace.

Greetings, Orbiter.ch

Cosmonauts Busy as U.S. Segment Crew Takes Day Off












ISS - Expedition 41 Mission patch.

October 21, 2014

A pair of cosmonauts suited up for a dry run of Wednesday’s spacewalk while Dragon will hang on to the International Space Station for a few more days.

Commander Max Suraev and Flight Engineer Alexander Samokutyaev spent Monday readying the Russian Orlan spacesuits they will wear when they exit the Pirs docking compartment Wednesday for a six-hour spacewalk.

Read more about the Russian spacewalk: http://www.nasa.gov/press/2014/october/nasa-tv-to-air-russian-spacewalk-from-international-space-station/

The duo donned their spacesuits for a spacewalk dry run. They checked suit controls and communications gear and conducted preliminary leak checks.


Image above: This moonlit panorama shows the United States from a point over Nebraska looking towards the southwest. Image Credit: NASA.

They are scheduled to open the Pirs docking compartment hatch to the vacuum of space at 9:24 a.m. EDT to begin the third spacewalk for Expedition 41.

Live broadcast from the Mission Control Center can be found at the Russian Space Agency: http://www.federalspace.ru/19837/

The spacewalkers will be outside the station’s Russian segment to jettison science and communications gear no longer being used. They will also remove a protective cover from a biological exposure experiment, collect samples of particulate matter on the Pirs docking compartment and photograph the station’s Russian exterior.

The departure of SpaceX CRS-4 has been delayed until Saturday. Dragon’s release for a Pacific Ocean splashdown had been scheduled for Tuesday. However, mission officials determined high sea states caused by storms in the splashdown zone exceeded recovery rules.


Image above: The SpaceX Dragon is attached to the International Space Station's Harmony node. Image Credit: NASA TV.

The crew spent part of the weekend loading non-critical items into Dragon which is berthed to the Earth-facing port of the Harmony node. With Dragon hatch closure now set for the end of the week, NASA astronauts Reid Wiseman and Barry Wilmore along with European Space Agency astronaut Alexander Gerst took Monday off.

The first female cosmonaut to live and work aboard the station, Elena Serova, spent Monday on a variety of science and maintenance tasks. She activated gear for the Cascade biological experiment which investigates cell cultivation. Serova also cleaned fan grilles, changed dust filters and updated the inventory management system.

Read more about the Cascade investigation: http://www.nasa.gov/mission_pages/station/research/experiments/628.html

Meanwhile, another commercial space freighter is waiting to take the place of SpaceX CRS-4 at the Harmony node. Orbital Sciences is preparing its Antares rocket at Wallops Flight Facility in Virginia for the Cygnus cargo vehicle’s third resupply flight. It is currently targeted for launch no earlier than Oct. 27.

For more information about the International Space Station (ISS), visit: http://www.nasa.gov/mission_pages/station/main/index.html

Images (mentioned), Text, Credits: NASA.

Best regards, Orbiter.ch

lundi 20 octobre 2014

Mars Orbiter Image Shows Comet Nucleus is Small












NASA - Mars Reconnaissance Orbiter (MRO) logo.

October 20, 2014


These images were taken of comet C/2013 A1 Siding Spring by NASA's Mars Reconnaissance Orbiter on Oct. 19, 2014, during the comet's close flyby of Mars and the spacecraft. Comet Siding Spring is on its first trip this close to the sun from the Oort Cloud at the outer fringe of the solar system. Image Credit: NASA/JPL-Caltech/University of Arizona.

The High Resolution Imaging Science Experiment (HiRISE) camera on NASA's Mars Reconnaissance Orbiter captured views of comet C/2013 A1 Siding Spring while that visitor sped past Mars on Sunday (Oct. 19), yielding information about its nucleus.

The images are the highest-resolution views ever acquired of a comet coming from the Oort Cloud at the fringes of the solar system.  Other spacecraft have approached and studied comets with shorter orbits. This comet's flyby of Mars provided spacecraft at the Red Planet an opportunity to investigate from close range.

This composite image shows two versions of each of two of the best HiRISE images of the comet. Shown at top are images with the full dynamic range, showing the nucleus and bright coma near the nucleus. Shown at bottom are versions where the fainter outer coma is brightened, saturating the inner region. The images at left and right were taken about nine minutes apart.

NASA's Mars Reconnaissance Orbiter spacecraft. Image Credits: NASA/JPL-Caltech

Images of comet Siding Spring from HiRISE are online at:

http://www.jpl.nasa.gov/spaceimages/details.php?id=PIA18618

The highest-resolution of images of the comet's nucleus, taken from a distance of about 86,000 miles (138,000 kilometers), have a scale of about 150 yards (138 meters) per pixel. Telescopic observers had modeled the size of the nucleus as about half a mile, or one kilometer wide.  However, the best HiRISE images show only two to three pixels across the brightest feature, probably the nucleus, suggesting a size smaller than half that estimate.

For more about HiRISE, visit: http://hirise.lpl.arizona.edu

For more about Mars Reconnaissance Orbiter, visit: http://mars.nasa.gov/mro/

For more about comet Siding Spring, including other images of the comet, visit: http://mars.jpl.nasa.gov/comets/sidingspring/

Images (mentioned), Text, Credits: NASA / JPL / Guy Webster.

Greetings, Orbiter.ch

Hubble Capture Images of Comet Siding Spring












NASA - Hubble Space Telescope patch.

Oct. 20, 2014.

The images bellow show -- before and after filtering -- comet C/2013 A1, also known as Siding Spring, as captured by Wide Field Camera 3 on NASA's Hubble Space Telescope.


Comet Siding Spring is plunging toward the Sun along a roughly 1-million-year orbit. The comet, discovered in 2013, was within the radius of Jupiter's orbit when the Hubble Space Telescope photographed it on March 11, 2014.


Hubble resolves two jets of dust coming from the solid icy nucleus. These persistent jets were first seen in Hubble pictures taken on Oct. 29, 2013.

The feature should allow astronomers to measure the direction of the nucleus's pole, and hence, rotation axis. The comet will make its closest approach to our Sun on Oct. 25, 2014, at a distance of 130 million miles, well outside Earth's orbit.

The Hubble Space Telescope is a project of international cooperation between NASA and the European Space Agency. NASA's Goddard Space Flight Center in Greenbelt, Maryland, manages the telescope. The Space Telescope Science Institute (STScI) in Baltimore conducts Hubble science operations. STScI is operated for NASA by the Association of Universities for Research in Astronomy, Inc., in Washington.

For images and more information about Hubble, visit: http://www.nasa.gov/hubble and http://hubblesite.org/ and http://www.spacetelescope.org/

Images, Text, Credits: NASA, ESA, and J.-Y. Li (Planetary Science Institute).

Greetings, Orbiter.ch