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Reçu aujourd’hui — 13 janvier 2026 6.5 📰 Sciences English

Turion Space Corp. Acquires Tychee Research Group to Accelerate Autonomous Space Operations and Mission Engineering

13 janvier 2026 à 15:00
Turion Space logo Square

IRVINE, Calif. & LOS ANGELES, Calif. — January 13, 2026 — Turion Space Corp. (“Turion”), a space infrastructure company that builds and operates mission-grade spacecraft and space operations software, today […]

The post Turion Space Corp. Acquires Tychee Research Group to Accelerate Autonomous Space Operations and Mission Engineering appeared first on SpaceNews.

2026 will be the year of space nuclear power and surviving the lunar night

Lunar night survival becomes an imperative “Surviving the lunar night has crossed a critical threshold: what was once a ‘nice-to-have’ is now the imperative for any serious lunar mission. We’re seeing this ‘survive, operate, thrive’ progression play out in real time: we’ve proven we can land repeatedly, now we’re focused on surviving that brutal two-week […]

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Anyon physics could explain coexistence of superconductivity and magnetism

13 janvier 2026 à 09:45

New calculations by physicists in the US provide deeper insights into an exotic material in which superconductivity and magnetism can coexist. Using a specialized effective field theory, Zhengyan Shi and Todadri Senthil at the Massachusetts Institute of Technology show how this coexistence can emerge from the collective states of mobile anyons in certain 2D materials.

An anyon is a quasiparticle with statistical properties that lie somewhere between those of bosons and fermions. First observed in 2D electron gases in strong magnetic fields, anyons are known for their fractional electrical charge and fractional exchange statistics, which alter the quantum state of two identical anyons when they are exchanged for each other.

Unlike ordinary electrons, anyons produced in these early experiments could not move freely, preventing them from forming complex collective states. Yet in 2023, experiments with a twisted bilayer of molybdenum ditelluride provided the first evidence for mobile anyons through observations of fractional quantum anomalous Hall (FQAH) insulators. This effect appears as fractionally quantized electrical resistance in 2D electron systems at zero applied magnetic field.

Remarkably, these experiments revealed that molybdenum ditelluride can exhibit superconductivity and magnetism at the same time. Since superconductivity usually relies on electron pairing that can be disrupted by magnetism, this coexistence was previously thought impossible.

Anyonic quantum matter

“This then raises a new set of theoretical questions,” explains Shi. “What happens when a large number of mobile anyons are assembled together? What kind of novel ‘anyonic quantum matter’ can emerge?”

In their study, Shi and Senthil explored these questions using a new effective field theory for an FQAH insulator. Effective field theories are widely used in physics to approximate complex phenomena without modelling every microscopic detail. In this case, the duo’s model captured the competition between anyon mobility, interactions, and fractional exchange statistics in a many-body system of mobile anyons.

To test their model, the researchers considered the doping of an FQAH insulator – adding mobile anyons beyond the plateau in Hall resistance, where the existing anyons were effectively locked in place. This allowed the quasiparticles to move freely and form new collective phases.

“Crucially, we recognized that the fate of the doped state depends on the energetic hierarchy of different types of anyons,” Shi explains. “This observation allowed us to develop a powerful heuristic for predicting whether the doped state becomes a superconductor without any detailed calculations.”

In their model, Shi and Senthil focused on a specific FQAH insulator called a Jain state, which hosts two types of anyon excitations. One type has electrical charge of 1/3 of an electron and the other with 2/3. In a perfectly clean system, doping the insulator with 2/3-charge anyons produced a chiral topological superconductor, a phase that is robust against disorder and features edge currents flowing in only one direction. In contrast, doping with 1/3-charge anyons produced a metal with broken translation symmetry – still conducting, but with non-uniform patterns in its electron density.

Anomalous vortex glass

“In the presence of impurities, we showed that the chiral superconductor near the superconductor–insulator transition is a novel phase of matter dubbed the ‘anomalous vortex glass’, in which patches of swirling supercurrents are sprinkled randomly across the sample,” Shi describes. “Observing this vortex glass phase would be smoking-gun evidence for the anyonic mechanism for superconductivity.”

The results suggest that even when adding the simplest kind of anyons – like those in the Jain state – the collective behaviour of these quasiparticles can enable the coexistence of magnetism and superconductivity. In future studies, the duo hopes that more advanced methods for introducing mobile anyons could reveal even more exotic phases.

“Remarkably, our theory provides a qualitative account of the phase diagram of a particular 2D material (twisted molybdenum ditelluride), although many more tests are needed to rule out other possible explanations,” Shi says. “Overall, these findings highlight the vast potential of anyonic quantum matter, suggesting a fertile ground for future discoveries.”

The research is described in PNAS.

The post Anyon physics could explain coexistence of superconductivity and magnetism appeared first on Physics World.

Reçu hier — 12 janvier 2026 6.5 📰 Sciences English

AI needs spatial intelligence. The GEOINT industry will deliver it.

12 janvier 2026 à 16:00
A seized Venezuelan crude oil tanker is shown in December in the Caribbean Sea in a Vantor image created with the AI-powered Maritime Sentry system. Credit: Vantor

For several years, the space-based geospatial intelligence industry has been chasing a logical vision for AI: use it to make our existing systems faster and smarter. Train models to detect objects. Automate change detection. Speed up analysis. These capabilities have delivered operational benefits. But they’ve also kept us focused on a specific paradigm — collect […]

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Space is becoming an industrial economy

The Chang'e-6 lander and ascender on the far side of the moon. Credit: CNSA

Shortly after space week in October, investment firm JP Morgan announced a $10 billion investment plan targeting industries critical for United States national security. In addition to things like nanomaterials, autonomous robotics and solar power, the announcement also focused on funding spacecraft and space launches. JP Morgan’s emphasis on space-related “frontier” technologies is significant, because it signals an acknowledgment that space is becoming an investable sector. What remains unclear is […]

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Applied lessons for NASA’s science programs

12 janvier 2026 à 13:00
Isaacman

It took a year, but the Jared Isaacman era at NASA finally started. Sworn in Dec. 17, the new administrator spoke at a NASA town hall the next day to take questions about his plans for the agency. He offered few specifics about those plans, saying he had to learn about agency activities. But he […]

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This year must bring greater collaboration against orbital congestion

12 janvier 2026 à 13:00
A visualization of active and inactive satellites, discarded rocket bodies, orbital debris and other space objects around Earth, showing an increasingly cluttered and hazardous Earth orbit. Credit: AstriaGraph by the University of Texas at Austin.

The problem of overcrowding orbits and increasing space debris has never been more urgent. International organizations, policy makers, regulators, space operators and researchers are recognizing how critical this issue is and how it could impact all space services and operations, including, but not limited to, satellite broadband, global navigation satellite systems, scientific research and space […]

The post This year must bring greater collaboration against orbital congestion appeared first on SpaceNews.

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