Thursday, October 06, 2016

Proxima b 'may well' harbour life: New study claims 'second Earth' just four light years away has oceans and a thin gassy atmosphere


  • The planet, named Proxima b, orbits our closest star, Proxima Centauri
  • It is around 1.3 times the size of Earth 
  • New study simulated water on the planet
  • Concluded it 'very well host liquid water on its surface, and therefore also some forms of life' 
  • Hoped we could send a robotic explorer to the planet  

A team including CNRS astrophysicists have calculated the size and surface properties of the planet dubbed Proxima b, and concluded it may be an 'ocean planet' similar to Earth.
Scientists announced Proxima b's discovery in August, and said it may be the first exoplanet—planet outside our Solar System—to one day be visited by robots from Earth.
The planet orbits within a 'temperate' zone from its host star Proxima Centauri, some four light years from us.

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An artist's impression of a view of the surface of the planet Proxima b orbiting the red dwarf star Proxima Centauri, the closest star to the Solar System. A team including CNRS astrophysicists have calculated the size and surface properties of the planet dubbed Proxima b, and concluded it may be an 'ocean planet' similar to Earth.
An artist's impression of a view of the surface of the planet Proxima b orbiting the red dwarf star Proxima Centauri, the closest star to the Solar System. A team including CNRS astrophysicists have calculated the size and surface properties of the planet dubbed Proxima b, and concluded it may be an 'ocean planet' similar to Earth.

It is estimated to have a mass about 1.3 times that of Earth, and orbits about 7.5 million kilometres (4.6 million miles) from its star—about a tenth the distance of innermost planet Mercury from the Sun.
'Contrary to what one might expect, such proximity does not necessarily mean that Proxima b's surface is too hot' for water to exist in liquid form, said a CNRS statement.
Proxima Centauri is smaller and 1,000 times weaker than our Sun, which means Proxima b is at exactly the right distance for conditions to be potentially habitable.

Proxima Centauri is smaller and 1,000 times weaker than our Sun, which means Proxima b is at exactly the right distance for conditions to be potentially habitable.
Proxima Centauri is smaller and 1,000 times weaker than our Sun, which means Proxima b is at exactly the right distance for conditions to be potentially habitable.

'The planet may very well host liquid water on its surface, and therefore also some forms of life,' the statement said.
In a study to be published in The Astrophysical Journal Letters, an international team led by researchers at the Marseille Astrophysics Laboratory (CNRS / Aix-Marseille Université) has determined its dimensions.
The size of exoplanets are generally calculated by measuring how much light they block out, from Earth's perspective, when they pass in front of their host star.
But no such transit of Proxima b has yet been observed, so the team had to rely on simulations to estimate the planet's composition and radius.
What Proxima b xould look like:  From left to right: Proxima b with the smallest attainable radius (65% metallic core surrounded by a rocky mantle separated into two phases), Earth (ditto with 32.5% core) and b with the Proxima maximum authorized range (50% of rocky mantle surrounded by a layer of water in solid and liquid form).
What Proxima b xould look like: From left to right: Proxima b with the smallest attainable radius (65% metallic core surrounded by a rocky mantle separated into two phases), Earth (ditto with 32.5% core) and b with the Proxima maximum authorized range (50% of rocky mantle surrounded by a layer of water in solid and liquid form).

They calculated the radius was between 0.94 and 1.4 times that of Earth, which is 6,371 kilometres on average.
Assuming a minimum radius of 5,990 km, the planet would be very dense, with a metallic core making up two-thirds of the entire planet's mass, surrounded by a rocky mantle.
If there is surface water, it would not contribute more than 0.05 percent to the planet's total mass, the team said—similar to Earth, where it is about 0.02 percent.
In the larger planet scenario, with a radius of 8,920 km, Proxima b's mass would be split 50-50 between a rocky centre and surrounding water.

WHAT MAKES PROXIMA B SO UNIQUE

Planet found in habitable zone around closest star to Earth
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Distance: This is the closest Earth-like planet we could ever find.
Orbiting our nearest star, the planet is only four light years away. 
Missions to send spacecraft to the planet to examine for signs of life are already in planning, and could happen within decades. 
Composition: The planet is rocky and a similar size to Earth.
Temperature: It lies in the 'habitable zone' of its star, which means there could be liquid water on its surface - a key ingredient for alien life. 
The temperature on the surface of the planet could be between -90° and 30° Celsius (-130 and 86 Fahrenheit).
Atmosphere: If Proxima b has an atmosphere, the simple ingredients - water, carbon dioxide, and rock - that are needed for the formation of biochemical cycles that we call life, could all be present and interacting on the planet's surface.
'In this case, Proxima b would be covered by a single, liquid ocean 200 km deep,' said the CNRS.
'In both cases, a thin, gassy atmosphere could surround the planet, like on Earth, rendering Proxima b potentially habitable,' it concluded.
Earlier this year, a group of researchers, using the European Southern Observatory (ESO) telescopes, have named the exciting world Proxima b.
Thousands of exoplanets have been discovered before, but unlike the others, this planet is within our reach. 
While four light years is a long way - more than 25 trillion miles - future generations of super-fast space craft could conceivably travel to the planet within the next few decades. 
If there is surface water, it would not contribute more than 0.05 percent to the planet's total mass, the team said—similar to Earth, where it is about 0.02 percent.
If there is surface water, it would not contribute more than 0.05 percent to the planet's total mass, the team said—similar to Earth, where it is about 0.02 percent.

A comparison  of several exoplanets. Curves correspond to specific compositions used in the model of internal structure. The existing area of Proxima b is drawn in gray and takes into account the uncertainty of its mass and its different possible compositions.
A comparison of several exoplanets. Curves correspond to specific compositions used in the model of internal structure. The existing area of Proxima b is drawn in gray and takes into account the uncertainty of its mass and its different possible compositions.
Much further in the future the planet may even be colonised by space travellers from Earth.
One possible obstacle to life evolving and flourishing on the planet is the way it hugs its parent star. 
Proxima b is only 4.6 million miles (7.5 million km) from the star, 5 per cent of the distance between the Earth and the sun, and takes just 11.2 days to complete one orbit. It is around 1.3 times as massive as Earth.
But because Proxima Centauri is a dim red dwarf star radiating much less heat than the sun, it still occupies the 'habitable zone' where temperatures are mild enough to permit liquid surface water.
The temperature on the surface of the planet could be between -90° and 30° Celsius (-130 and 86 Fahrenheit). 

On the other hand, the planet is blasted by powerful ultraviolet rays and X-rays from the star. Any life that evolved on its surface would have to be hardened against the radiation.
But the prospect of finding life on Proxima b has excited scientists.
'Many exoplanets have been found and many more will be found, but searching for the closest potential Earth-analogue and succeeding has been the experience of a lifetime for all of us,' Dr Guillem Anglada-Escudé, lead author of the paper, said.
'Many people's stories and efforts have converged on this discovery. The result is also a tribute to all of them. The search for life on Proxima b comes next.' 
'Proxima B is our neighbour': New Earth-like planet discovered
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Two separate papers were published , describing the habitability of Proxima b and its climate.
The papers find the existence of liquid water on the planet today 'cannot be ruled out'.
This means water may be present over the surface of the planet. But it would only be in the sunniest regions, either in an area in the hemisphere of the planet facing the star.
The way Proxima b rotates, strong radiation from its star and the formation history of the planet makes its climate quite different from that of the Earth. 
It is unlikely that Proxima b has seasons. But if liquid water does exist on the planet, it could mean alien life might thrive there.
If this is the case, we could discover it within decades, experts have said. 
Artist's impression of an Earth-like exoplanet. The still nameless planet is believed to be Earth-like and orbits at a distance to Proxima Centauri that could allow it to have liquid water on its surface - an important requirement for the emergence of life
Artist's impression of an Earth-like exoplanet. The still nameless planet is believed to be Earth-like and orbits at a distance to Proxima Centauri that could allow it to have liquid water on its surface - an important requirement for the emergence of life

PROXIMA CENTAURI 

Just over four light-years from the solar system lies a red dwarf star.
Because it is the sun's closest neighbour, the star has been named Proxima Centauri.
This cool star in the constellation of Centaurus is too faint to be seen with the unaided eye and lies near to the much brighter pair of stars known as Alpha Centauri AB.
A team called Pale Red Dot is behind the discovery, which includes researchers from the University of Hertfordshire, Queen Mary University of London, the Instituto de Astrofísica de Andalucía in Granada, Spain and the University of Göttingen in Germany, among others. 
The researchers used the High Accuracy Radial velocity Planet Searcher (HARPS), an instrument on the European Southern Observatory's 3.6-metre La Silla telescope in Chile's Atacama Desert.
The telescope measured light from Proxima, the fingerprints that reveal what the star is made of.
Small shifts in the frequency of the starlight can be used to work out tiny movements of the star in response to an orbiting planet's gravitational pull.

OTHER 'SECOND EARTHS' THAT HAVE BEEN FOUND ACROSS THE UNIVERSE 

Nasa's Kepler telescope has also been busy in the hunt for alien life, finding over 4,000 new planets outside our solar system over the past three years.
Earlier this month a team of astronomers has narrowed down this list to those with the most potential to have liquid water, or even life.
They pinpointed 20 out of the 4,000 that are most likely to be like our own, and are starting to look more closely at these candidates.
These 'second Earths' are much further away than Proxima b, so are harder to explore.
216 Kepler planets are located within the 'habitable zone' - an area around a star in which an orbiting planet's surface could hold liquid water.
Of those, they list 20 that are the best candidates to be habitable rocky planets like Earth.
The list includes Kepler-186 f, Kepler-62 f, Kepler-283 c and Kepler-296 f.
'The first hints of a possible planet were spotted back in 2013, but the detection was not convincing,' said Dr Anglada-Escudé.
'Since then we have worked hard to get further observations off the ground with help from ESO and others. The recent Pale Red Dot campaign has been about two years in the planning.'
The Pale Red Dot data, when combined with earlier observations made at ESO observatories and elsewhere, revealed the clear signal of an exciting result.
At times Proxima Centauri is approaching Earth at about 3 miles (5km) per hour and at times it is receding at the same speed.
This pattern of changing velocities repeats with a period of 11.2 days, meaning that is how long it takes to orbit its sun.
The orbit of the planet around Proxima Centauri (Proxima b) with the same region of the Solar System.
The orbit of the planet around Proxima Centauri (Proxima b) with the same region of the Solar System.

Careful analysis of the tiny light shifts showed the planet has a mass at least 1.3 times that of the Earth, orbiting about 4.3 million miles (7 million kilometres) from Proxima Centauri.
Some questions about whether life could exist are left unanswered, however.
'If Proxima b has an atmosphere and if there is water there, and these are big 'ifs', it is intriguing to think that the simple ingredients - water, carbon dioxide, and rock - that are needed for the formation of biochemical cycles that we call life, could all be present and interacting on the planet's surface,' said Dr Mikko Tuomi, from the Centre for Astrophysical Research at the University of Hertfordshire.

COULD WE TRAVEL TO THE PLANET?

The true test would be to go there. Using conventional space technology (either manned or unmanned) and some clever slingshot manoeuvres, it would take at least 15,000 years to reach Proxima Centauri.
But the ambitious Starshot Project aims to send tiny robots to this star system, propelled by powerful Earth-based lasers.
They are estimating that it would only take about 20 years to get there in this manner, travelling at a speed of approximately 60,000 km per second (or 135m miles per hour).
Those robots could relay back data about the system, and potentially even close-up pictures of Proxima b.
Source: Martin Archer, Space Plasma Physicist, Queen Mary University of London, writing for The Conversation.
'But we do not really know. We need to study this system a lot more over the coming decades in order to be able to start answering such questions. 
'However, it is a great place to start looking for life outside the solar system and it is a very exciting discovery.' 
'It certainly seems possible that we could find something out of this world within our lifetime,' said Martin Archer, Space Plasma Physicist, Queen Mary University of London, writing for The Conversation.
At least some additional information about the environmental conditions on Proxima Centauri b should come sooner rather than later, the researchers say.
Now that the planet has been detected, there is an opportunity for follow-up observations.
A possible detection of life, or at least of conditions suggestive of the presence of life, is likely to be decades off
But these observations provide opportunities to learn about a planet around the most common type of star in our galaxy – with lessons that are interesting in their own right, for astronomers seeking a systematic understanding of planet formation in our home galaxy.  


Saturday, August 06, 2016

Black holes may be 'back doors' to other parts of the universe, researchers claim

  • Researchers say there could be a wormhole at the center of black holes
  • Any matter passing through would be stretched to extremes to enter
  • It would be returned to normal size upon exiting in a different region
  • This goes against idea that matter sucked into black hole is lost forever

Deep inside of a black hole lies a region known as the gravitational singularity, where space-time curves toward infinity, and no matter passing through can survive – or so it’s been thought.In a new study, researchers suggest there may instead be a way out through a wormhole at the center of the black hole, which acts as a ‘back door.’By this theory, anything traveling through the black hole would be ‘spaghettified,’ or stretched to the extreme, but returned back to its normal size when it emerges in a different region of the universe.

In the new theory, anything traveling through the black hole would be ‘spaghettified,’ or stretched to the extreme, but returned back to its normal size when it emerges in a different region of the universe. An artist's impression of a wormhole is pictured
Physicists from the Institute of Corpuscular Physics in Valencia propose a new scenario that considers the singularity as an imperfection in the geometric structure of space-time.To test this idea, the researchers took uncommon approach, using geometric structures similar to those of a crystal of graphene layer, which better match the activity inside of a black hole.

For the study, published in the journal Classical and Quantum Gravity, the team focused on a type of black hole which is motionless and electrically-charged.
‘Black holes are a theoretical laboratory for trying out new ideas about gravity,’ says Gonzalo Olmo, a Ramón y Cajal researcher at the University of Valencia.
‘Just as crystals have imperfections in their microscopic structure, the central region of a black hole can be interpreted as an anomaly in space-time, which requires new geometric elements in order to be able to describe them more precisely.
‘We explored all possible options, taking inspiration from facts observed in nature.’
 In a new study, researchers suggest there may instead be a way out through a wormhole at the centre of the black hole, which acts as a ¿back door.¿ An illustration of a black hole is pictured
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 In a new study, researchers suggest there may instead be a way out through a wormhole at the centre of the black hole, which acts as a ‘back door.’ An illustration of a black hole is pictured
By analyzing the new geometries, the researchers found a center point with a small, spherical surface, representing a wormhole at the heart of a black hole.
‘Our theory naturally resolves several problems in the interpretation of electrically-charged black holes,’ Olmo explains.

WHAT IS SPAGHETTIFICATION?

If you stray too close to a black hole, then you will stretch out, just like spaghetti, due to a gravitation gradient across your body.
Imagine that you are headed feet first towards a black hole.
Since your feet are physically closer to the black hole, they will feel a stronger gravitation pull towards it than your head will.
You arms, by virtue of the fact that they're not at the centre of your body, will be attracted in a slightly different direction than your head is.
This will cause parts of the body toward the edges to be brought inwards.
The net result is not only an elongation of the body overall, but also a thinning out in the middle.
Hence, your body or any other object, such as Earth, will start to resemble spaghetti long before it hits the centre of the black hole.
‘In the first instance, we resolve the problem of the singularity, since there is a door at the centre of the black hole, the wormhole, through which space and time can continue.’
The equations revealed that a wormhole at the centre would be smaller than an atomic nucleus, but increases in size relative to the charge stored within the black hole.
Researchers say the matter inside the black hole would not be lost forever as it¿s previously been thought, and would instead be expelled into another area of the universe.

Researchers say the matter inside the black hole would not be lost forever as it’s previously been thought, and would instead be expelled into another area of the universe.
If any matter were passing through, it would be stretched to extreme measures, allowing it to enter the wormhole.
Then, it would be compacted as it comes out on the other side.
While it’s unlikely that a human would survive this process, the researchers say the matter inside the black hole would not be lost forever as it’s previously been thought, and would instead be expelled into another area of the universe.
And, the researchers say there would be no need for ‘exotic’ energy to generate the wormhole, as Einstein’s theory of gravity suggests.
‘In our theory,’ the researcher explained, ‘the wormhole appears out of ordinary matter and energy, such as an electric field.’ 

WHAT IS A WORMHOLE? 

Space-time can be warped and distorted. It takes an enormous amount of matter or energy to create such distortions, but theoretically, distortions are possible.
In the case of the wormhole, a shortcut is made by warping the fabric of space-time. Imagine folding a piece of paper with two pencil marks drawn on it to represent two points in space-time.
The line between them shows the distance from one point to the other in normal space-time.
If the paper is now bent and folded over almost double - the equivalent to warping space-time - then poking the pencil through the paper provides a much shorter way of linking the two points, in the same way a wormhole would create a shortcut.

The problem with using wormholes to travel in space or time is that they are inherently unstable. When a particle enters a wormhole, it also creates fluctuations that cause the structure to collapse in on it.

Scientists Are Now Even More Confused By Potential "Alien Superstructure"







Scientists Are Now Even More Confused By Potential "Alien Superstructure"

After observing Tabby's Star for four years, results only provoke more questions.







Within our own galaxy, some astronomers believe there may be a massive piece of alien technology, built to harvest energy from a distant star. The star, KIC 8462852, also known as Tabby's Star, exhibits strange behavior, flickering and dimming, that can't be explained by any known astronomical phenomena. A new, unpublished study posted to arXiv, reports the results of studying images of the star from the Kepler Telescope over the past four years. The paper shows shocking results: the star's luminosity varied, sometimes dipping by 20% over the course of the study period. Even more perplexingly, its total luminosity, or flux, diminished by 4% overall over that time.
"The part that really surprised me was just how rapid and non-linear [the dimming] was," study author Ben Montet of Caltech told Gizmodo. "We spent a long time trying to convince ourselves this wasn't real. We just weren't able to."
Tabby's Star was first observed in the 19th century, providing scientists plenty of data to reference in their search for answers. Another researcher, Bradley Schaefer of Louisiana State University, published a study earlier this year claiming that the light output of the star has decreased by 19% in 100 years. His claims were highly disputed. Now, this data seems to back up the assertion that the star is dimming at an astonishingly rapid rate, even if Schaefer's data is not totally accurate.

One of the explanations for this phenomena, and the one that has received the most press, is the idea that the star could be flickering and dimming due to an "alien superstructure" that extraterrestrial beings are building around their star as a way, perhaps, to collect energy (these hypothetical structure are known as Dyson spheres). Though there's been no proof of this hypothesis, it also can't be ruled out. The other theories, including that the star is blocked by the debris of a smashed planet, or what's known as "gravity darkening," would go towards explaining parts of the phenomenon, but no current theory could explain it entirely.
"The new paper states, and I agree, that we don't have any really good models for this sort of behavior," Jason Wright, the Penn State astronomer who first suggested the alien superstructure theory said. "That's exciting!"

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