Two huge hot blobs of rock influence Earth’s magnetic field, study reveals

Exploring Earth’s deep interior is a far bigger challenge than exploring the solar system. While we have traveled 25 billion km into space, the deepest we have ever gone below our feet is just over 12 km. Consequently, little is known about the conditions at the base of the mantle and the top of the core—the most significant interface in Earth’s interior and the region where new research has now uncovered exciting magnetic activity.

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Ultra-thin metasurface can generate and direct quantum entanglement

Quantum technologies, devices and systems that process, store, detect, or transfer information leveraging quantum mechanical effects, have the potential to outperform classical technologies in a variety of tasks. An ongoing quest within quantum engineering is the realization of a so-called quantum internet: a network conceptually analogous to today’s internet, in which distant nodes are linked through shared quantum resources, most notably quantum entanglement.

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Niobium’s superconducting switch cuts near-field radiative heat transfer 20-fold

When cooled to its superconducting state, niobium blocks the radiative flow of heat 20 times better than when in its metallic state, according to a study led by a University of Michigan Engineering team. The experiment marks the first use of superconductivity—a quantum property characterized by zero electrical resistance—to control thermal radiation at the nanoscale.

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Using duality to construct and classify new quantum phases

A team of theoretical researchers has found duality can unveil non-invertible symmetry protected topological phases, which can lead to researchers understanding more about the properties of these phases, and uncover new quantum phases. Their study is published in Physical Review Letters.

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Ultra-thin metasurface chip turns invisible infrared light into steerable visible beams

The invention of tiny devices capable of precisely controlling the direction and behavior of light is essential to the development of advanced technologies. Researchers at the Advanced Science Research Center at the CUNY Graduate Center (CUNY ASRC) have taken a significant step forward with the development of a metasurface that can turn invisible infrared light into visible light and aim it in different directions—without any moving parts. The details of their work are explained in a paper published in the journal eLight.

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Angstrom-scale plasmonic gap boosts nonlinear light output by 2,000% per volt

Researchers at the Institute for Molecular Science (NINS, Japan) and SOKENDAI have demonstrated a more than 2000% voltage-induced enhancement of near-field nonlinear optical responses. To achieve this giant modulation, they focused on an angstrom-scale gap formed between a metallic tip and substrate in a scanning tunneling microscope (STM), which can strongly confine and enhance light intensity through plasmon excitation. The paper is published in the journal Nature Communications.

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Scientists genetically link orangutans to giant ape thought to be Bigfoot

YouTube Video Here: https://www.youtube.com/embed/1qW256pUdYg?feature=oembed&enablejsapi=1

Bigfoot may or may not be real, but there is a living relative of the giant ape thought to be Bigfoot already living among us known as the orangutan, according to scientists who studied the ape’s genetic code.

There have been countless Bigfoot sightings for hundreds of years, and the mystery of Bigfoot continues to be popular around the world today as scientists remain puzzled about just exactly what kind of creature people are seeing out in the wilderness.

One likely explanation is that people are misidentifying living animals such as bears, which also walk upright, like Bigfoot. Bears are also hairy and can have black, brown and reddish fur.

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A bear walking upright may be misidentified as a Bigfoot. Image via Wikimedia.

Another explanation is that Bigfoot is a hoax perpetrated by humans trying to fool the public for attention, which could explain videos such as the famous Patterson-Gimlin footage shot in 1967.

But one theory that has been offered by Bigfoot enthusiasts such as cryptozoologists is that Bigfoot is a missing link between humans and the great ape known as Gigantopithecus blacki.

Gigantopithecus roamed the Earth up to two million years ago and died out at least 100,000 years ago during the Pleistocene when climate change reduced the food supply the great ape needed to survive.

The problem is that Gigantopithecus lived in Asia, where all fossil remains such as teeth have been found. None have been found in North America, which one would expect if the creature had not crossed the Bering Strait land bridge connecting North America and Asia as cryptozoologists have suggested.

Vision artistica perfil Gigantopithecus comparado

Of course, just because no Gigantopithecus remains have been found in North America, it does not mean there aren’t any out there waiting to be found, whether it be in the Pacific Northwest where most Bigfoot sightings occur, or elsewhere on the continent.

Related: North Carolina man captures Bigfoot on video, and two other recent sightings in the state

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Gigantopithecu, screenshot via YouTube

Regardless of whether Bigfoot is real or not, Gigantopithecus was a real great ape that did exist. And even if it did not migrate to North America and gave rise to a relic population of the species that is being put forward as Bigfoot today, it turns out that there is a living relative of the species that we can see today in zoos and in the wild.

Genetic studies have concluded that orangutans are a close relative of the Gigantopithecus. Gigantopithecus may have even looked similar to orangutans. However, another blow to the Gigantopithecus as Bigfoot theory is that the great ape moved more like gorillas, using all four limbs to walk in order to distribute its weight.

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An Orangutan is directly related to Gigantopithecus. Image via Wikimedia.

A 1.9-million-year-old tooth

We know this because scientists directly linked orangutans and Gigantopithecus genetically to a common ancestor after testing a 1.9 million-year-old Gigantopithecus molar found in China.

According to a study published by the journal Nature:

Hypotheses regarding the relationships between Gigantopithecus and extinct and extant hominids are wide ranging but difficult to substantiate because of its highly derived dentognathic morphology, the absence of cranial and post-cranial remains and the lack of independent molecular validation.

We retrieved dental enamel proteome sequences from a 1.9-million-year-old G. blacki molar found in Chuifeng Cave, China. The thermal age of these protein sequences is approximately five times greater than that of any previously published mammalian proteome or genome. We demonstrate that Gigantopithecus is a sister clade to orangutans (genus Pongo) with a common ancestor about 12–10 million years ago, implying that the divergence of Gigantopithecus from Pongo forms part of the Miocene radiation of great apes.

In addition, we hypothesize that the expression of alpha-2-HS-glycoprotein, which has not been previously observed in enamel proteomes, had a role in the biomineralization of the thick enamel crowns that characterize the large molars in Gigantopithecus.

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Gigantopithecus teeth, which scientists used to extract 1.9 million-year-old DNA. Image via Wikimedia.

This extraordinary discovery is particularly interesting because it shows genetic material can be retrieved from remains this old, giving scientists hope that they can confirm human evolution further by finding more missing links. It’s the first time that genetic material has been extracted from remains this old from a fossil in the subtropics.

The survival of an Early Pleistocene dental enamel proteome in the subtropics further expands the scope of palaeoproteomic analysis into geographical areas and time periods previously considered incompatible with the preservation of substantial amounts of genetic information.

Gigantopithecus blacki restoration
Restoration of Gigantopithecus blacki as appeared at the “Gigants” exhibition in the Czech Republic, 2014. Photo by Michal Maňas via Wikimedia Commons (CC BY 4.0)

Ancient DNA analysis

Lead study author Frido Walker of the Globe Institute at the Faculty of Health and Medical Sciences expressed his own excitement at how the study can be applied to humans.

“Primates are relatively close to humans, evolutionary speaking, he said in a statement. “With this study, we show that we can use protein sequencing to retrieve ancient genetic information from primates living in subtropical areas even when the fossil is two million years old. Until now, it has only been possible to retrieve genetic information from up to 10,000-year-old fossils in warm, humid areas. This is interesting, because ancient remains of the supposed ancestors of our species, Homo sapiens, are also mainly found in subtropical areas, particularly for the early part of human evolution. This means that we can potentially retrieve similar information on the evolutionary line leading to humans.”

Bigfoot
Gigantopithecus, Museum of Man, San Diego by Lindsay Holmwood via Flickr ((CC BY 2.0)

It’s certainly a giant leap forward in the abilities of genetic testing, as study co-author and Globe Institute Associate Professor Enrico Cappellini explained.

“By sequencing proteins retrieved from dental enamel about two million years old, we showed it is possible to confidently reconstruct the evolutionary relationships of animal species that went extinct too far away in time for their DNA to survive till now,” he said. “In this study, we can even conclude that the lineages of orangutan and Gigantopithecus split up about 12 million years ago.”

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Gigantopithecus chasing a tiger via YouTube screenshot

“Previous attempts to understand which could be the living organism most similar to Gigantopithecus could only be based on the comparison of the shape of the fossils with skeletal reference material from living great apes,” Cappellini continued.

“Ancient DNA analysis was not an option, because Gigantopithecus went extinct approximately 300,000 years ago, and in the geographic area Gigantopithecus occupied no DNA older than approximately 10,000 years has been retrieved so far. Accordingly, we decided to sequence dental enamel proteins to reconstruct its evolutionary relation with living great apes, and we found that orangutan is Gigantopithecus’ closest living relative.”

And so, if we were to ever find remains of a great ape somewhere in the Pacific Northwest, scientists could use DNA testing to see if it is a Gigantopithecus or related, assuming the DNA survived the harsh climate. If Gigantopithecus did migrate to North America, it would lend some credibility to Bigfoot believers everywhere. But right now, Gigantopithecus remains are even more elusive here than the Bigfoot itself.

More about Gigantopithecus and the strange discovery of a tooth in a Hong Kong drug store from PBS Eons


Featured Image: Gigantopithecus, Museum of Man, San Diego by Lindsay Holmwood via Flickr (CC BY 2.0)

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Veteran who alleged he was improperly detained by an LAPD 5150 hold awarded $6.8M in suit

The man alleged that LAPD officers violated his constitutional rights by detaining and hospitalizing him after being incorrectly advised by a VA worker that he was suicidal

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Real-time single-event position detection using high-radiation-tolerance GaN

Silicon semiconductors are widely used as particle detectors; however, their long-term operation is constrained by performance degradation in high-radiation environments. Researchers at University of Tsukuba have demonstrated real-time, two-dimensional position detection of individual charged particles using a gallium nitride (GaN) semiconductor with superior radiation tolerance.

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NASA fuels its moon rocket in a crucial test to decide when Artemis astronauts will launch

NASA fueled its new moon rocket in one final make-or-break test Monday, with hopes of sending astronauts on a lunar fly-around as soon as this coming weekend.

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Machine learning accelerates plasma mirror design for high-power lasers

Plasma mirrors capable of withstanding the intensity of powerful lasers are being designed through an emerging machine learning framework. Researchers in Physics and Computer Science at the University of Strathclyde have pooled their knowledge of lasers and artificial intelligence to produce a technology that can dramatically reduce the time it takes to design advanced optical components for lasers—and could pave the way for new discoveries in science.

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AI streamlines deluge of data from particle collisions

Scientists at the U.S. Department of Energy’s (DOE) Brookhaven National Laboratory have developed a novel artificial intelligence (AI)-based method to dramatically tame the flood of data generated by particle detectors at modern accelerators. The new custom-built algorithm uses a neural network to intelligently compress collision data, adapting automatically to the density or “sparsity” of the signals it receives.

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Intercity quantum sensor network tightens axion dark matter constraints

Recently, scientists from institutions including the University of Science and Technology of China made a fundamental breakthrough in nuclear-spin quantum precision measurement. They developed the first intercity nuclear-spin-based quantum sensor network, which experimentally constrains the axion topological-defect dark matter and surpasses the astrophysical limits. The study is published in the journal Nature.

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NASA conducts vital tests ahead of slated Moon mission

NASA on Monday was conducting critical final tests ahead of setting a launch date for its first crewed flyby mission to the moon in more than half a century.

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Europe observatory hails plan to abandon light-polluting Chile project

Europe’s ESO star-gazing organization on Monday welcomed plans to call off building a massive green energy project in the Chilean desert which threatened to spoil its telescopes’ view of the darkest skies on Earth.

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