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Using the physics of radio waves to empower smarter edge devices

Researchers at Duke University have created a new method to use analog radio waves to boost energy-efficient edge AI, enabling devices to run powerful AI models without heavy chips or distant servers. The approach, called Wireless Smart Edge networks (WISE), achieves nearly 96% image classification accuracy while consuming significantl...

SourceDuke University·JournalScience Advances·TypeExperimental study·DateJan 9, 2026

Controlled laboratory study finds no evidence of stress or brain activity changes related to 5G exposure

Researchers conducted two triple-blind human studies using real 5G signals in the 26 GHz band, finding no measurable biological effects on stress responses or brain electrical activity. Cortisol and alpha-amylase levels remained stable across all sampling points, indicating no acute biological changes related to stress.

SourceBarcelona Institute for Global Health (ISGlobal)·JournalEnvironmental Research·TypeRandomized controlled/clinical trial·DateDec 10, 2025

Tiny component for record-breaking bandwidth

Researchers from ETH Zurich have developed a tiny plasmonic modulator that can transmit data with frequencies over a trillion oscillations per second, breaking previous records. The new modulator can be used for various applications, including high-performance computing and measurement technology.

SourceETH Zurich·JournalOptica·DateMar 20, 2025

First radio pulses traced to dead-star binary

An international team has traced radio pulses to a binary system with a dead star, where a red dwarf and white dwarf orbit each other, emitting a radio blast every two hours. This discovery shows that the movement of stars within a binary system can also emit long-period radio bursts.

SourceNorthwestern University·JournalNature Astronomy·TypeObservational study·DateMar 12, 2025

Brown astronomers create new technique to eliminate signals disrupting sensitive radio telescopes

Astronomers at Brown University have created a new method to pinpoint and filter out unwanted radio frequencies, crucial for preserving high-quality observations in the face of increasing satellite activity. By combining near-field corrections and beamforming techniques, researchers successfully tracked an airplane transmitting a telev...

SourceBrown University·JournalPublications of the Astronomical Society of Australia·TypeObservational study·DateFeb 12, 2025

Earth detecting Earth

Researchers found that radio signals, such as planetary radar emissions, are the most detectable technosignatures, visible from up to 12,000 light-years away. Atmospheric technosignatures like nitrogen dioxide emissions can be detected from 5.7 light-years away with the upcoming Habitable Worlds Observatory.

SourceSETI Institute·JournalThe Astronomical Journal·DateFeb 3, 2025

NUS researchers develop new battery-free technology to power electronic devices using ambient radiofrequency signals

A team of NUS researchers developed a compact and sensitive rectifier technology that uses nanoscale spin-rectifiers to convert ambient wireless radio frequency signals into DC voltage. The technology overcomes challenges in existing energy harvesting modules, enabling battery-free operation for small electronic devices.

SourceNational University of Singapore·JournalNature Electronics·TypeExperimental study·DateJul 24, 2024

Model of extending radio wave coverage using reconfigurable intelligent surfaces

Researchers developed a method to analytically express the performance of wireless communication systems when using reconfigurable intelligent surfaces (RIS). The model accurately predicted the effects of RIS on improving radio wave propagation environment, providing a useful guide for positioning RIS to receive stronger signals.

SourceTohoku University·JournalIEEE Transactions on Antennas and Propagation·DateJul 10, 2024

Physicists create new form of antenna for radio waves

Researchers at University of Otago have developed a new form of antenna for radio waves using an atomic vapor, providing high sensitivity and broad tunability. The portable design enables efficient measurement of fields over long distances, making it suitable for defence and communications applications.

SourceUniversity of Otago·JournalApplied Physics Letters·DateOct 17, 2023

World’s first demonstration of terahertz signal transparent relay and switching

Researchers developed a system to transmit high-capacity terahertz-wave signals to different locations using direct terahertz-optical conversion and fiber-wireless technology, achieving 32 Gb/s capacity. The system overcomes radio communications limitations in the terahertz band, expanding communication coverage.

Quest for alien signals in the heart of the Milky Way takes off

A team led by Akshay Suresh is searching for periodic signals in the Milky Way's core, which could be a strategic site for an extraterrestrial beacon. The Breakthrough Listen Investigation for Periodic Spectral Signals (BLIPSS) uses novel methodology to sift through data and identify potential evidence of advanced life forms.

SourceSETI Institute·JournalThe Astronomical Journal·DateMay 30, 2023

New ‘phase shifter’ technology will reduce signal loss in antenna systems

Researchers at the University of Birmingham have developed a new type of high-performance 'phase shifter' that uses a liquid Gallium alloy to control microwave and millimetre-wave radio signals. The prototype testing shows low signal losses and extremely low phase deviation over a wide bandwidth.

SourceUniversity of Birmingham·JournalIEEE Transactions on Microwave Theory and Techniques·TypeExperimental study·DateMar 5, 2023