Wednesday, February 24, 2016

NASA wants to use a giant laser to get to Mars in 3 days




Despite how far we've come in space exploration, one thing still holding us back from interstellar travel is our slow spacecraft.
While we're able to propel particles to close to the speed of light in the lab, we're struggling to even accelerate spacecraft tobeyond 3 percent of that. With our current technology, it's estimated it'll take humans around five months to reach Mars.
But NASA scientist Philip Lubin is working on a system where lasers propel spacecraft with giant sails to the Red Planet in as little as three days.
Much like Bill Nye's much-hyped solar sail, this 'photonic propulsion' system relies on the momentum of photons - particles of light - to move forward. But instead of photons from the Sun's rays, Lubin's design would be given a push by giant Earth-based lasers.
It sounds pretty far-fetched, but in a video for NASA 360, Lubin explains that the technology is very much readily available, and that the system could easily be scaled up.
"There are recent advances that take this from science fiction to science reality," Lubin explains. "There is no known reason why we can not do this."
But let's step back for a second and investigate how the system works. Right now, when we launch spacecraft, the thrust comes from burning a chemical, such as rocket fuel. Not only does this fuel source weigh down spacecraft, it's also an incredibly inefficient system when compared to electromagnetic acceleration, which is the use of light or other electromagnetic radiation to accelerate objects.
"Electromagnetic acceleration is only limited by the speed of light while chemical systems are limited to the energy of chemical processes," writes Lubin in a paper on the technology.
But while electromagnetic acceleration in the lab is relatively straightforward, it requires a lot of complicated and expensive equipment - such as the ring of superconducting magnets that make up the Large Hadron Collider - and hasn't been easy to scale up to the size required for space travel.
One candidate propulsion system, known as the 'impossible' EM Drive, has received a whole lot of attention for allegedly achieving electromagnetic acceleration, but NASA scientists still haven't been able to figure out how it works, or prove that it wasn't an experimental anomaly. 
Photonic propulsion, on the other hand, works in theory, regardless of the scale, making it a more viable candidate.
So how do photons work to propel something as big as a spacecraft? Despite not having any mass, particles of light have both energy and momentum, and when they reflect off an object, that momentum is transferred into a little push. With a large, reflective sail, it's possible to generate enough momentum to gradually accelerate a spacecraft.
While Lubin and his team haven't yet tried out their system, their calculations show that photonic propulsion could get a 100-kg robotic craft to Mars in just three days. 
A larger craft, like the kind humans might travel in, would take around a month to get there - one-fifth of the time it would take the Space Launch System (SLS), the world's most powerful rocket currently being developed to take us to Mars.
Lubin also explains that in the 10 minutes it will take to get the SLS into orbit, photonic propulsion could propel a spacecraft to an unheard-of 30 percent the speed of light - and it would also use a similar amount of chemical energy (50 to 100 gigawatts) to do so.
But the real benefit of photonic propulsion comes over longer distances, where the spacecraft has more time to speed up, and could eventually take us outside our Solar System and to neighbouring stars.
To be clear, the system isn't designed to send humans across interstellar distances - first of all,robots are far better equipped for that mission, and secondly, we'd be far too heavy. Instead, Lubin proposes wafer-thin spacecraft that can get close to the speed of light.
But sending our own artificial intelligence to these distant solar systems - especially ones that potentially harbour habitable planets - would still be huge.
"The human factor of exploring the nearest stars and exoplanets would be a profound voyage for humanity, one whose non-scientific implications would be enormous," writes Lubin. "It is time to begin this inevitable journey beyond our home."
Lubin and his team last year received a proof-of-concept grant from NASA to show that photonic propulsion could be used for space travel, so we should start seeing some real-life results soon. Let's hope that the reality lives up to the hype, because we're pretty excited.
Find out more in the NASA 360 video:

Read the original article on ScienceAlert. Copyright 2016. Follow ScienceAlert on Twitter. 

Sunday, May 10, 2015

What Would It Be Like to Live on Alien Planet Kepler-186f?


What Would It Be Like to Live on Alien Planet Kepler-186f?


Thursday, March 12, 2015

Ganymede, biggest moon in the solar system, has a saltwater ocean


NASA says new observations from the Hubble Space Telescope confirm the presence of a subsurface ocean on Jupiter's largest moon.

This artist's concept shows Ganymede in the shadow of Jupiter, with its aurorae glowing. NASA/ESA 

NASA says new observations from the Hubble Space Telescope confirm the existence of a salty subsurface ocean on Ganymede, the largest moon in the solar system, which orbits our largest neighbor planet, Jupiter. The ocean is estimated to be about 60 miles thick -- 10 times deeper than the Mariana Trench, the deepest part of the Pacific -- but is buried under a layer of mostly icy crust 95 miles thick. Ganymede joins other neighborhood moons like Europa, the asteroid belt dwarf planet Ceres, and Saturn's Enceladus and Titan that host strange icy or liquid layers, making them prime targets in the search for life beyond Earth. Scientists have hypothesized for decades that Ganymede might harbor an icy or even liquid ocean beneath its frigid surface. The key to confirming the presence of a saltwater ocean came from observing Ganymede's aurorae, which would look bright red to a human able to stand on the surface of the moon and gaze up through its thin oxygen atmosphere. But don't get too excited, it's much too thin to support life as we know it.

Auroral phenomena -- think the bright northern lights of the aurora borealis or the aurora australis down south -- are not fully understood, but are linked to magnetic fields interacting with the solar wind. Ganymede is the only moon in the solar system that generates its own magnetic field thanks to its liquid iron core, but it also lies within the magnetic field of massive Jupiter. As Jupiter's magnetic field changes, it affects the aurorae on Ganymede, causing them to "rock back and forth" according to Joachim Saur, a professor for geophysics at the University of Cologne, who presented the news on a NASA teleconference Thursday.
Saur explained that the rocking effect seemed to be dampened by something else. Rather than altering the aurorae six degrees, as models suggested that they should given the electromagnetic fields involved, they only changed by two degrees, leading scientists to conclude that the rocking is inhibited by a salty subsurface ocean. "This confirms the existence of an ocean and simultaneously rules out the absence of an ocean," he told reporters. The news comes on the heels of the finding earlier this week that Saturn's moon Enceladus may contain enough warm water to support life. Ganymede will also now be more competitive when it comes to garnering attention among the Jovian moons -- its sibling Europa and its presumed subsurface ocean has long excited space geeks, even working its way into the priority list for future NASA missions. Looks like NASA may now need to add another moon to its itinerary for that deep-space journey.


More giant craters spotted in Russia's far north


Moscow (AFP) - Russian scientists have now discovered seven giant craters in remote Siberia, a geologist told AFP on Thursday, adding that the mysterious phenomenon was believed to be linked to climate change.
The discovery of an enormous chasm in a far northern region known to locals as "the end of the world" in July last year prompted speculation it had been caused by a meteorite or even aliens.
A YouTube video of the hole went viral and a group of scientists was despatched to investigate.
"We have just learnt that in Yakutia, new information has emerged about a giant crater one kilometre (0.6 miles) in diameter," the deputy director of the Oil and Gas Research Institute of the Russian Academy of Sciences, Vasily Bogoyavlensky, told AFP.
He said this brought to seven the number of reported pits.
"Footage allows us to identify minimum seven craters, but in fact there are plenty more," he said.
All of the craters have been discovered in the remote energy-rich Yamalo-Nenetsky region in north-western Siberia.
Scientists say that rather than aliens or meteorites, the holes are caused by the melting of underground ice in the permafrost, which has possibly been sped up by rising temperatures due to global warming.
"The phenomenon is similar to the eruption of a volcano," said Bogoyavlensky.
As the ice melts, methane gas is released which builds up pressure until an explosion takes place, leading to the formation of a crater.
The scientists are still trying to estimate what danger, if any, is posed by the holes. Methane is extremely flammable and at least one of the craters is situated near an exploited gas deposit.
An expedition is planned to the latest crater discovered to determine if it was formed in the same manner.
It may be hard to identify other craters which may have formed into lakes over time, said Bogoyavlensky.
"When they appear the craters are empty, and little by little they fill up with water. In the space of two or three years they become lakes and it is difficult to study them."
He said some may have formed dozens or hundreds of years ago, but went unnoticed in such remote regions of the planet.


Saturday, October 25, 2014

Super Earths: 10 Major Discoveries




Sunday, October 19, 2014

Lockheed Martin: Compact Fusion Research & Development


Thursday, September 25, 2014

Ancient Aliens





tt1643266 - Ancient Aliens

Ancient Aliens

Ancient Aliens presents theories of ancient astronauts and proposes that historical texts, archaeology and legends contain evidence of past human-extraterrestrial contact.
Ancient Aliens Link Categories
Season 1 (5 Episodes, 55 Links)
Season 2 (10 Episodes, 111 Links)
Season 3 (16 Episodes, 182 Links)
Season 4 (7 Episodes, 27 Links)
Season 5 (12 Episodes, 60 Links)
Season 6 (22 Episodes, 250 Links)
Season 7 (4 Episodes, 71 Links)

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