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Updated radiocarbon dates for the Greek shipwreck Kyrenia

A revised radiocarbon calibration curve for the period between 433-250 BCE has been established, allowing for improved date estimates on Greek shipwrecks. The study confirms the Kyrenia Ship's final voyage around 280 BCE, slightly later than previous estimates.

SourcePLOS·JournalPLOS ONE·TypeObservational study·DateJun 26, 2024

Learning the imperfections: a new approach to using neural networks for low-power digital pre-distortion (DPD) in mmWave systems

A new approach uses neural networks to automatically determine polynomial coefficients for digital pre-distortion (DPD) in RF-PAs, reducing hardware complexity and power efficiency. This method can correct non-linearities and support emerging standards without extensive real-time processing.

SourceTokyo Institute of Technology·TypeExperimental study·DateMay 10, 2024

Bullseye! NIST devises a method to accurately center quantum dots within photonic chips

Researchers at NIST developed standards and calibrations for optical microscopes that enable accurate alignment of quantum dots to within 10-20 nanometers. This method could increase the number of high-performance devices by a hundred-fold, improving the reliability of quantum information technologies and biological imaging.

SourceNational Institute of Standards and Technology (NIST)·JournalOptica Quantum·TypeExperimental study·DateMar 26, 2024

Sneezes, rain clouds and ink jets: NIST improves the ability of optical microscopes to measure the volume of microdroplets

Researchers at NIST developed new standards and calibrations for optical microscopes, enabling accurate measurement of microdroplet volumes smaller than 100 trillionths of a liter. They combined microscopy with gravimetry to verify results, linking their findings to fundamental constants of nature.

A Highly-Accurate and Broadband Terahertz Counter Eyes "Beyond 5G / 6G"

The National Institute of Information and Communications Technology has developed a highly-accurate and wide-measurable band terahertz frequency counter. The counter's measurement uncertainty is less than 1 x 10^-16, making it suitable for various applications including high-resolution spectroscopy of ultracold molecules.

SourceNational Institute of Information and Communications Technology (NICT)·JournalMetrologia·TypeExperimental study·DateJul 29, 2021

Codifying the universal language of honey bees

Virginia Tech researchers Margaret Couvillon and Roger Schürch have decoded the universal language of honey bees, allowing scientists to interpret the insects' sophisticated communications. By deciphering waggle dances, they hope to better understand pollinators' preferred forages and food sources.

SourceVirginia Tech·JournalAnimal Behaviour·DateMar 27, 2019

More water resources over the Sahel region of Africa in the 21st century under global warming

Scientists from Institute of Atmospheric Physics found a strong relationship between historical precipitation biases in South Asia and the western North Pacific and future Sahel precipitation projections. The study reveals a 109% increase in Sahel summer precipitation and a 119% increase in available water resources due to global warming.

What the smell can tell

Researchers have developed a detection system for volatile organic compounds (VOCs) emitted by modern museum artifacts, allowing for non-invasive monitoring of their preservation status. The system uses gas-chromatography/mass-spectrometry to identify characteristic VOC patterns, enabling the classification of degradation states.

SourceWiley·JournalAngewandte Chemie International Edition·DateMar 6, 2018

Radio shadow reveals tenuous cosmic gas cloud

Researchers detected radio absorption by gas clouds in front of bright radio sources, revealing the composition and conditions of diffuse gas in the Milky Way galaxy. The discovery of three new absorption systems and confirmation of one previously known system provides insight into tenuous gas clouds and their role in the universe.

SourceNational Institutes of Natural Sciences·JournalPublications of the Astronomical Society of Japan·DateDec 6, 2015

Actual dating requires calibration down to the last ion

Researchers developed a new calibration technique for thermoluminescence dating, improving accuracy to within 1% using oxygen and lithium ions. The method employs a pulsed ion beam and a combination of detectors to replicate natural radiation exposure.

SourceSpringer·JournalThe European Physical Journal Plus·DateApr 15, 2015