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Neutrinos caught on camera

A new detector technology has been developed to track elementary particles in large volumes of unsegmented scintillator material. The system uses a plenoptic camera and single-photon avalanche diode array sensors to achieve high-resolution 3D tracking, even in photon-starved conditions.

SourceETH Zurich·JournalNature Communications·DateApr 24, 2026

Physicists zero in on the mass of the fundamental W boson particle

A team of physicists has confirmed the mass of the fundamental W boson particle using an ultra-precise measurement, reaffirming the Standard Model's predictions. The new measurement is based on over 1 billion proton-colliding events produced by the Large Hadron Collider and is in line with previous experiments.

SourceMassachusetts Institute of Technology·JournalNature·DateApr 8, 2026
Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C)

Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C) keeps Macs, tablets, and meters powered during extended observing runs and remote surveys.

The ultra-high-energy neutrino may have begun its journey in blazars

A new study suggests that the ultra-high-energy neutrino may have originated from a population of blazars, which could provide a plausible explanation for the rare phenomenon. The researchers used a combination of simulations and observations from various instruments to test their hypothesis.

SourceSissa Medialab·JournalJournal of Cosmology and Astroparticle Physics·TypeData/statistical analysis·DateMar 9, 2026
Celestron NexStar 8SE Computerized Telescope

Celestron NexStar 8SE Computerized Telescope combines portable Schmidt-Cassegrain optics with GoTo pointing for outreach nights and field campaigns.

New breakthrough in detecting ‘ghost particles’ from the Sun

Researchers have successfully detected the interaction of neutrinos with carbon atoms in a vast underground detector, marking a breakthrough in understanding stellar processes, nuclear fusion, and the universe. The observation uses a unique 'delayed coincidence' method to separate real neutrino interactions from background noise.

SourceUniversity of Oxford·JournalPhysical Review Letters·DateDec 10, 2025

Scientists rule out the existence of a long-suspected particle

A team of scientists from Rutgers University has debunked a decades-old theory about a mysterious particle using data from the MicroBooNE experiment. The study found no sign of sterile neutrinos, which were proposed to explain strange neutrino behavior, closing the door on one popular explanation.

SourceRutgers University·JournalNature·TypeObservational study·DateDec 4, 2025
Apple iPhone 17 Pro

Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.

KATRIN tightens the net around the elusive sterile neutrino

The KATRIN collaboration presents the most precise direct search for sterile neutrinos through measurements of tritium β-decay. No sign of a sterile neutrino was found, excluding a large region of parameter space suggested by earlier anomalies. The result relies on distinct detection methods and complements oscillation experiments.

SourceMax-Planck-Institut fur Kernphysik·JournalNature·TypeExperimental study·DateDec 3, 2025

How neutrinos may hold the keys to why we exist

Combining data from T2K and NOvA experiments, MSU researchers provide precise measurements of neutrino properties, including oscillation behavior and mass ordering. The results shed new light on the mystery of how the universe evolved, with implications for theories of particle behavior.

SourceMichigan State University·JournalNature·DateOct 28, 2025
SAMSUNG T9 Portable SSD 2TB

SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.

A ‘dead’ 1800s idea rises again... with clues to the mystery of the universe’s missing antimatter

Japanese physicists have shown that knots can arise in a realistic particle physics framework, potentially explaining the origin of the universe's matter surplus. By combining two long-studied extensions of the Standard Model, the team found a stable knot configuration that could have formed and dominated in the early universe.

SourceInternational Institute for Sustainability with Knotted Chiral Meta Matter (SKCM2)·JournalPhysical Review Letters·DateOct 22, 2025

Neutrino experiments in US and Japan join forces

Neutrino experiments from US and Japan have combined their data to measure precise neutrino behavior, bringing scientists closer to understanding how matter was favored over antimatter in the early universe. The results shed light on neutrino oscillation, a phenomenon that could help solve the missing antimatter problem.

SourceCalifornia Institute of Technology·JournalNature·TypeMeta-analysis·DateOct 22, 2025

Neutrinos ‘flavor’ may hold clues to the universe’s biggest secrets

Physicists have analyzed how neutrinos change 'flavor' as they travel through the cosmos, gaining insights into their masses and evolution. The study's findings hint at possible Charge-Parity violation in neutrinos and their antimatter counterparts, with researchers seeking more data to answer fundamental questions about the universe.

SourceOhio State University·JournalNature·TypeExperimental study·DateOct 22, 2025
Kestrel 3000 Pocket Weather Meter

Kestrel 3000 Pocket Weather Meter measures wind, temperature, and humidity in real time for site assessments, aviation checks, and safety briefings.

Mixing neutrinos of colliding neutron stars changes how merger unfolds

Researchers found that neutrino flavor transformations alter the composition and signals of what's left after a neutron star collision, impacting the creation of heavy metals and rare earth elements. The simulations also influenced the matter ejected from the merger and electromagnetic emissions detectable from Earth.

SourcePenn State·JournalPhysical Review Letters·TypeComputational simulation/modeling·DateSep 19, 2025

Physicists devise an idea for lasers that shoot beams of neutrinos

Researchers at MIT introduce the concept of a neutrino laser that uses cooled radioactive atoms to produce amplified neutrino beams. By cooling rubidium-83 to near absolute zero, the team predicts accelerated radioactive decay and production of neutrinos. This innovation could lead to new applications in medicine and communication.

SourceMassachusetts Institute of Technology·JournalPhysical Review Letters·DateSep 8, 2025

New method for detecting neutrinos

Researchers at Max Planck Institute for Nuclear Physics have successfully detected antineutrinos from a nuclear reactor using the CONUS+ experiment. The detection uses Coherent Elastic Neutrino-Nucleus Scattering (CEvNS), allowing for improved sensitivity to new physics beyond the Standard Model.

SourceMax-Planck-Institut fur Kernphysik·JournalNature·TypeExperimental study·DateJul 30, 2025
Sky-Watcher EQ6-R Pro Equatorial Mount

Sky-Watcher EQ6-R Pro Equatorial Mount provides precise tracking capacity for deep-sky imaging rigs during long astrophotography sessions.

The secret life of neutrinos

A team of researchers has proposed that massive star collapse can create a 'neutrino collider,' leading to dramatic changes in supernova outcomes. This process could produce a neutron core or even a black hole remnant, depending on the presence of secret neutrino interactions.

SourceUniversity of California - San Diego·JournalPhysical Review Letters·TypeComputational simulation/modeling·DateJul 14, 2025

Innovative new detector to hunt for neutrinos

Physicist Matthias Schott is developing a dedicated neutrino detector for the LHC that can handle high data transfer rates, enabling researchers to study high-energy neutrinos. The detector uses GridPix technology and may reveal new insights into neutrino interactions, including potential evidence of anti-tau neutrinos.

SourceUniversity of Bonn·DateMay 8, 2025

Astroparticle physics: Neutrinos weigh less than 0.45 electronvolts

The KATRIN experiment has achieved a precision measurement of the neutrino mass, setting an upper limit of 0.45 electron volts per square centimeter. This result is a significant reduction from previous measurements and demonstrates the experiment's ability to detect the elusive neutrino particles.

SourceKarlsruher Institut für Technologie (KIT)·JournalNature·TypeExperimental study·DateApr 11, 2025
Garmin GPSMAP 67i with inReach

Garmin GPSMAP 67i with inReach provides rugged GNSS navigation, satellite messaging, and SOS for backcountry geology and climate field teams.

Robert McKeown recognized for a half century of distinguished service

Robert McKeown, a distinguished service award recipient, has made significant contributions to nuclear physics over the past 50 years. He supervised 14 Ph.D. students and educated thousands of people worldwide through teaching and lecturing at prestigious institutions.

SourceDOE/Thomas Jefferson National Accelerator Facility·DateJan 2, 2025

Eyes on the Sun: Naked thallium-205 ion decay reveals history over millions of years

Researchers at GSI Helmholtzzentrum für Schwerionenforschung GmbH measure half-life of thallium-205 ion decay to understand Sun's long-term stability and its connection to Earth's climate. The experiment, known as LOREX, provides insights into the Sun's evolutionary history.

SourceGSI Helmholtzzentrum für Schwerionenforschung GmbH·JournalPhysical Review Letters·TypeExperimental study·DateDec 11, 2024

ERC Starting Grant for neutrino research awarded to Dr. Zewei Xiong

Dr. Zewei Xiong has received an ERC Starting Grant to study collective neutrino oscillations in supernovae and neutron-star mergers. His project NeuTrAE aims to clarify lingering puzzles regarding neutrino flavor evolution, a crucial aspect of particle and nuclear astrophysics.

SourceGSI Helmholtzzentrum für Schwerionenforschung GmbH·DateSep 5, 2024
AmScope B120C-5M Compound Microscope

AmScope B120C-5M Compound Microscope supports teaching labs and QA checks with LED illumination, mechanical stage, and included 5MP camera.

Mary Bishai named Distinguished Scientist Fellow

Mary Bishai, a Brookhaven physicist, has been recognized as a Distinguished Scientist Fellow by the DOE Office of Science. Her work on understanding neutrinos' properties has led to extraordinary leadership and service to the particle physics community. As a mentor, she is guiding the next generation of researchers.

SourceDOE/Brookhaven National Laboratory·DateAug 12, 2024

First measurement of electron- and muon-neutrino interaction rates at the highest energy ever detected from an artificial source

A team of researchers from Chiba University successfully measured the interaction rates of high-energy electron and muon neutrinos using the FASERν detector at the Large Hadron Collider. The study marked the first direct observation of these interactions at a particle collider, providing new insights into particle physics.

SourceChiba University·JournalPhysical Review Letters·TypeExperimental study·DateAug 5, 2024
GQ GMC-500Plus Geiger Counter

GQ GMC-500Plus Geiger Counter logs beta, gamma, and X-ray levels for environmental monitoring, training labs, and safety demonstrations.

Closing in on the Elusive Neutrino

Researchers from the US and Germany report a realistic contender to measure the elusive neutrino mass using Cyclotron Radiation Emission Spectroscopy. The project tracks electrons generated by beta decay to reveal the neutrino mass, aiming for scalability beyond existing technology.

SourceDOE/Pacific Northwest National Laboratory·JournalPhysical Review Letters·TypeExperimental study·DateSep 6, 2023

Unveiling quantum gravity: New results from IceCube and Fermi data

Researchers have found preliminary evidence supporting quantum gravity models that predict an energy-dependent reduction in speed of ultrarelativistic particles. This effect, expected to be small, has been observed in gamma-ray bursts and ultra-high-energy neutrinos detected by Fermi and IceCube telescopes.

SourceThe University of Bergen·JournalNature Astronomy·DateJun 12, 2023

Astrophysicists discover the perfect explosion in space

Researchers found that kilonovae, caused by neutron star collisions, produce spherical explosions with symmetrical shapes. The discovery may provide a new key to fundamental physics and measuring the Universe's age.

SourceUniversity of Copenhagen - Faculty of Science·JournalNature·DateFeb 15, 2023

‘Ghostly’ neutrinos provide new path to study protons

Researchers from the University of Rochester and MINERvA collaboration used beams of neutrinos at Fermilab to investigate proton structure. This technique offers a new view on measuring protons using neutrino scattering, providing insights into nuclear effects and improving future measurements of neutrino properties.

SourceUniversity of Rochester·JournalNature·DateFeb 1, 2023
Aranet4 Home CO2 Monitor

Aranet4 Home CO2 Monitor tracks ventilation quality in labs, classrooms, and conference rooms with long battery life and clear e-ink readouts.

Study makes spin liquid model more realistic

Researchers improved the Kitaev spin liquid model by freezing electrons in space, allowing only spin contributions at low temperatures. The study successfully explained experimental data and predicted a topological phase in the presence of an external magnetic field.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalPhysical Review·DateOct 10, 2022

Neutrino factories in deep outer space

An international research team has shed light on the origin of neutrinos, shedding new evidence that blazars can be confidently associated with astrophysical neutrinos. The study utilizes neutrino data from the IceCube Neutrino Observatory and BZCat catalogue to establish a connection between high-energy neutrinos and galactic nuclei.

SourceUniversité de Genève·JournalThe Astrophysical Journal Letters·TypeData/statistical analysis·DateJul 14, 2022

Condition for neutrino oscillation instability in Stars

Basudeb Dasgupta's study shows that collective oscillations can occur only if the spectra of two neutrino flavors cross over at some energy or emission angle. This result guarantees that observation of neutrino oscillation instabilities will reveal new information from deep within the star.

SourceTata Institute of Fundamental Research·JournalPhysical Review Letters·DateFeb 28, 2022
Apple AirPods Pro (2nd Generation, USB-C)

Apple AirPods Pro (2nd Generation, USB-C) provide clear calls and strong noise reduction for interviews, conferences, and noisy field environments.

An overview of neutrinos and their interactions

Neutrinos, produced by astrophysical sources and artificial means, interact subtly with matter due to their chargelessness and masslessness. The study of neutrinos challenges our understanding of particle physics, particularly the phenomenon of neutrino oscillation, where particles transition between three flavours.

SourceSpringer·JournalThe European Physical Journal Special Topics·DateFeb 21, 2022

Neutrinos are lighter than 0.8 electronvolts

The KATRIN experiment has achieved a new upper limit on neutrino mass of 0.8 eV, entering the cosmologically and particle-physically important sub-eV mass range. This is the first time that a direct neutrino mass experiment has reached this sensitivity.

SourceMax Planck Institute for Physics·JournalNature Physics·TypeExperimental study·DateFeb 14, 2022

To find sterile neutrinos, think small

Two small-scale experiments, a quantum dark matter detector and a particle accelerator, aim to detect sterile neutrinos. If successful, they could improve cancer treatment by producing radioactive isotopes.

SourceAmerican Physical Society·JournalPhysical Review Letters·DateOct 12, 2021
Davis Instruments Vantage Pro2 Weather Station

Davis Instruments Vantage Pro2 Weather Station offers research-grade local weather data for networked stations, campuses, and community observatories.

NASA's Swift helps tie neutrino to star-shredding black hole

Researchers linked a high-energy neutrino to an object outside our galaxy, tracing it back to a black hole tearing apart a star in a rare cataclysmic occurrence called a tidal disruption event. The findings provide insights into how these phenomena work and challenge previous expectations about when and how neutrinos are produced.

SourceNASA/Goddard Space Flight Center·JournalNature Astronomy·DateFeb 22, 2021

UK scientists build core components of global neutrino experiment

UK scientists have started production of key equipment for the international Deep Underground Neutrino Experiment (DUNE), a particle physics experiment studying elusive particles called neutrinos. The detectors will capture neutrino interactions in a liquid argon gas detector, with 150 APAs built with millimeter precision.

SourceDOE/Fermi National Accelerator Laboratory·DateFeb 9, 2021

Compelling evidence of neutrino process opens physics possibilities

The COHERENT experiment at Oak Ridge National Laboratory has established a new kind of neutrino interaction, coherent elastic neutrino-nucleus scattering. The discovery confirms earlier observations and provides constraints on alternative theoretical models, shedding light on the universe's nature.

SourceDOE/Oak Ridge National Laboratory·JournalPhysical Review Letters·DateJan 26, 2021

Next step in simulating the universe

A new simulation approach accurately depicts the role of elusive particles called neutrinos in the evolution of the universe. The results show that neutrinos suppress dark matter clustering and are correlated with massive galaxy clusters.

SourceUniversity of Tsukuba·JournalThe Astrophysical Journal·DateDec 1, 2020
GoPro HERO13 Black

GoPro HERO13 Black records stabilized 5.3K video for instrument deployments, field notes, and outreach, even in harsh weather and underwater conditions.

Sun model completely confirmed for the first time

The Borexino experiment has successfully measured neutrinos from the sun's second fusion process, the Carbon Nitrogen Oxygen cycle (CNO cycle), confirming theoretical predictions. The findings provide evidence on the metallicity of the sun and have implications for understanding the properties of stars.

SourceTechnical University of Munich (TUM)·JournalNature·DateNov 26, 2020

Solar CNO neutrinos observed for the first time

The Borexino Collaboration has directly detected CNO cycle neutrinos in the Sun for the first time, providing conclusive proof of this fusion process. The researchers estimated that CNO neutrinos account for about 1% of the energy produced by the Sun.

SourceJohannes Gutenberg Universitaet Mainz·JournalNature·DateNov 25, 2020

Understanding the power of our Sun

The Borexino collaboration has successfully experimentally confirmed the Bethe-Weizsäcker cycle, a crucial component of our Sun's nuclear fusion reactions. This achievement marks a significant breakthrough in understanding solar energy production and neutrino behavior.

SourceTechnische Universität Dresden·JournalNature·DateNov 25, 2020
Fluke 87V Industrial Digital Multimeter

Fluke 87V Industrial Digital Multimeter is a trusted meter for precise measurements during instrument integration, repairs, and field diagnostics.

Understanding ghost particle interactions

Researchers at Argonne National Laboratory develop nuclear physics model to study neutrino interactions, shedding light on why neutrinos change flavors during space or matter travel. The team's findings are crucial for understanding the universe's matter-antimatter imbalance and fundamental questions about its origins.

SourceDOE/Argonne National Laboratory·JournalPhysical Review X·DateSep 28, 2020

ERC Starting Grant for Sara Buson

Sara Buson aims to confirm blazars as the most important extragalactic neutrino sources, revolutionizing our understanding of blazar astrophysics. She will analyze a large sample of observations and physical data to establish a new framework for multimessenger studies.

SourceUniversity of Würzburg·DateSep 3, 2020

Researchers develop novel approach to modeling yet-unconfirmed rare nuclear process

Physicists at Michigan State University's Facility for Rare Isotope Beams have developed a new method to model neutrinoless double-beta decay, a yet-unconfirmed rare nuclear process with significant implications for particle physics and cosmology. The novel approach, known as the In-Medium Generator-Coordinate Method, enables controlle...

SourceMichigan State University Facility for Rare Isotope Beams·JournalPhysical Review Letters·DateJul 6, 2020
Rigol DP832 Triple-Output Bench Power Supply

Rigol DP832 Triple-Output Bench Power Supply powers sensors, microcontrollers, and test circuits with programmable rails and stable outputs.

A step forward in solving the reactor-neutrino flux problem

The University of Jyvaskyla's nuclear theory group, in collaboration with the EXO-200 experiment, has made significant progress in solving the long-standing reactor antineutrino anomaly. By measuring the electron spectral shape of beta decay, they have verified a theoretical hypothesis and supported the HKSS flux model.

SourceUniversity of Jyväskylä - Jyväskylän yliopisto·JournalPhysical Review Letters·DateJun 17, 2020

Scientists make step towards understanding the universe

Research by University of Sheffield physicists indicates a difference in neutrino and antineutrino behavior, which could help explain the universe's matter-matter asymmetry. The T2K experiment strengthens previous observations and paves the way for future discoveries.

SourceUniversity of Sheffield·JournalNature·DateApr 16, 2020