Researchers found that high nitrogen monoxide emissions in cities lead to overestimation of ground-level ozone concentrations by up to 50 percent. The Leighton ratio, used in computer models, is flawed when nitrogen monoxide levels are high.
A team of physicists has proposed a model for a repeating partial tidal disruption event, revealing the capture of a star by a supermassive black hole and its repeated stripping of material. The study provides unprecedented insight into the existence of supermassive black holes and the orbital dynamics of stars in galaxy centers.
Astronomers using Hubble observed a star's final moments as it was gobbled up by a black hole, creating a donut-shaped torus. The event provides forensic clues to the black hole homicide, with details on the debris's behavior and the accretion rate.
A team led by University of Maryland astronomer Igor Andreoni discovered a bright optical flare caused by a dying star's encounter with a supermassive black hole. The event, AT2022cmc, is extremely rare and was found using a novel data pipeline that analyzed the Zwicky Transient Facility survey.
Astronomers have detected the most distant black hole swallowing a star, with the event occurring one-third of its current age. The discovery was made using ESO's Very Large Telescope (VLT) and provides new insights into these extreme events.
Astronomers have discovered a mysterious bright flash emanating from a relativistic jet of matter streaking out from a supermassive black hole. The signal, AT 2022cmc, is the brightest TDE ever detected and originates from a black hole that suddenly began devouring a nearby star, releasing an enormous amount of energy.
Researchers suggest using ancient red giant stars' winds as a potential source of material for observing the supermassive black hole. This could provide the accretion rate needed to detect the black hole, which is currently undetectable due to its low activity.
Researchers developed a new inversion method to retrieve tropospheric ozone profiles using ground-based MAX-DOAS measurements. The method accurately obtained tropospheric ozone concentrations and profiles, with highly correlated results from Lidar and in-situ measurements.
Astronomers used the Young Supernova Experiment to detect an intermediate-mass black hole in a dwarf galaxy, revealing its mass and providing insight into supermassive black hole growth. The study aims to improve understanding of black hole-galaxy relationships and inform theories on supermassive black hole formation.
Research found that air pollution from diesel exhaust and ozone significantly reduces the reproductive success of parasitic wasps controlling aphids on oilseed rape plants. The pollutants alter plant chemistry, attracting a specific wasp species more successfully.
The Devils Hole pupfish has the lowest genetic diversity among known vertebrates, with 58% of its genomes identical. This lack of diversity may doom the species to extinction as climate change and human impacts increase.
Astronomers have discovered the closest-known black hole to Earth, a dormant stellar-mass black hole located about 1600 light-years away in the constellation Ophiuchus. This discovery was made possible by precise observations of the motion of the black hole's companion star using the Gemini Multi-Object Spectrograph instrument.
Researchers use polarized X-ray measurements to refine models of black holes swallowing matter. The new data from Cygnus X-1 reveals a pencil-shaped plasma outflow and supports the hypothesis that processes near the black hole launch jets. This insight improves understanding of gravity's effects on space-time around black holes.
Researchers at University of Miami Rosenstiel School used climate model to investigate temperature changes in subpolar North Atlantic region. The study found that human-driven atmospheric changes are the cause of a warming hole, not a slowdown of ocean circulation.
Astronomers were surprised to find that a black hole is ejecting material at half the speed of light nearly three years after shredding a nearby star. The delayed outflow challenges scientists' understanding of black hole feeding behavior, with one researcher likening it to a 'black hole burping'.
The discovery confirms the existence of precession in a binary black hole system, where one black hole distorts space-time and causes its orbit to wobble back and forth. This effect is 10 billion times stronger than previously measured, providing insights into Einstein's theory of general relativity.
A team of international researchers used aurora data to assess the impact of radiation-belt electrons on the ozone layer. They found a localized ozone hole in the mesosphere, about 400 km wide, directly below isolated proton auroras, with up to 10-60% of ozone destroyed.
A research team proposes that magnetic reconnection around black holes energizes plasma, producing copious electron-positron pairs loaded into radio jets. This explanation aligns with M87 observations and predicts short-term X-ray emission when plasma is loaded.
Excess ground-level ozone damages plant foliage, alters flowering patterns, and blocks pollinators' access to flowers. Ozone also disrupts plant-pollinator communication through altered chemical signatures.
Researchers have developed a novel carrier doping method for p-type semiconductors, which improves photovoltaic device performance by increasing hole concentration. The new method uses alkali ion impurities to enhance conductivity in copper(I)-based semiconductors.
Researchers have coupled different types of electron-hole pairs in molybdenum disulfide, merging their properties to create novel particles. This breakthrough enables the production of individual photons with adjustable properties, paving the way for quantum communication applications.
High levels of OH radicals can be generated indoors due to human presence and ozone, transforming chemicals in the process. This 'oxidation field' has significant implications for indoor air quality and occupant health.
When humans are exposed to ozone indoors, they produce highly reactive hydroxyl (OH) radicals that oxidize pollutant gases. The human body is a chemical reactor consuming or producing oxidants and oxidized species, similar to how Earth interacts with the atmosphere.
Researchers developed a new Integrated Ozone Depletion metric to measure ozone-destroying substance impacts on the ozone layer. The IOD considers emission strength, atmospheric duration, and ozone destruction, providing a straightforward tool for evaluating ozone layer protection measures.
A team of researchers used sophisticated imaging algorithms to reveal a thin, bright ring of light created by photons flung around the back of a supermassive black hole. The photon ring, comprising increasingly sharp sub-rings, confirms theoretical predictions and offers new ways to explore these mysterious objects.
This study reveals that anthropogenic monoterpenes are a major contributor to urban ozone pollution, with emissions from biomass burning activities exacerbating the problem. The researchers estimate that monoterpene oxidation can provide an additional 4-9 ppb of ozone during daytime, accounting for up to 13% of total ozone production.
A team of astronomers, known for debunking black hole discoveries, found a dormant stellar-mass black hole in the Large Magellanic Cloud. The newly discovered black hole is at least nine times the mass of the Sun and orbits a hot star weighing 25 times the Sun's mass.
A team of experts finds a dormant stellar-mass black hole in the Large Magellanic Cloud, a neighbor galaxy to our own. The star that formed the black hole vanished without any sign of a powerful explosion.
Researchers from the University of York discovered a link between reducing particle pollution and increasing surface ozone pollution in some emerging economies. The study found that reducing particle pollution can lead to a 20-30% increase in ozone pollution, impacting health, ecosystems, and agriculture.
Researchers found a correlation between Arctic ozone depletion and extreme weather events in the Northern Hemisphere. Simulations suggest that reduced ozone levels contribute to warmer temperatures and droughts in central Europe, while wet conditions prevail in polar regions.
A large, all-season ozone hole has been detected over tropical regions, with an area seven times greater than the Antarctic ozone hole. The discovery highlights the need for further research on ozone depletion and its impact on human health and ecosystems.
Researchers at University of Cologne and Masaryk University discovered a star, S4716, orbiting Sagittarius A* in just four years and reaching speeds of 8000 kilometers per second. The study sheds new light on the origin and evolution of fast-moving stars near black holes.
A team of scientists used the flickering light of gas around a black hole to construct an accurate model of our galaxy's central black hole. They found that gas is directly infalling from large distances, rather than being siphoned off over time.
Researchers at UC Berkeley have detected a possible free-floating black hole in the Milky Way galaxy using gravitational microlensing. The object's mass is estimated to be between 1.6 and 4.4 times that of the sun, but its nature as a black hole or neutron star remains uncertain.
A new study reveals an 'expanding hole' illusion that deceives the brain, prompting a dilation reflex in the pupils and making us perceive more light. The illusion is perceived by approximately 86% of people and affects how our visual system anticipates and makes sense of the visual world.
The Event Horizon Telescope Collaboration has captured the first direct visual evidence of a supermassive black hole at the centre of our galaxy. The image reveals a dark central region surrounded by a bright ring-like structure, indicating the presence of a massive object four million times more massive than our Sun.
For the first time, astronomers have captured an image of the supermassive black hole at the center of our galaxy, revealing a dark central region surrounded by a bright ring-like structure. The observation provides valuable clues about the workings of such giants and confirms that the object is indeed a black hole.
A team of University of Illinois researchers, led by Charles Gammie, has captured the first direct visual evidence of a supermassive black hole at the center of the Milky Way. The image reveals a dark central region surrounded by a bright ringlike structure, providing valuable clues about the workings of such giants.
A team of astronomers, including those from MIT's Haystack Observatory, has captured the light around our own supermassive black hole, revealing for the first time an image of Sagitarrius A*, the black hole at the center of the Milky Way galaxy. The resulting image reveals SgrA* in a glowing, donut-shaped ring of light.
The Event Horizon Telescope (EHT) has captured the first image of Sagittarius A*, a black hole at the center of the Milky Way, revealing a ring-like structure and shadow. The observation confirms Einstein's theory of general relativity and provides new insights into giant black holes.
Researchers developed a technique to study supermassive black holes smaller than M87's by measuring the brightness of their shadows over time. The 'shadow' signal can reveal the size and shape of a black hole's event horizon, shedding light on gravity's nature.
Researchers find that black holes go through a 'hard' and 'soft' state during outbursts, with the final flash possibly indicating a brief expansion of the corona. The findings help scientists understand how supermassive black holes shape galaxy formation.
Research reveals that tropospheric ozone contributes more to the Southern Ocean's warming than previously thought. This finding highlights the importance of reducing air pollution to mitigate ocean heat uptake and climate change.
Researchers found a missing link between galaxies and quasars, discovering a supermassive black hole in archived Hubble Space Telescope data. The object, GNz7q, appears to be a black hole just starting to overpower its host galaxy in the process of becoming a quasar.
Research reveals that ozone levels in the upper and lower atmosphere are weakening one of Earth's main cooling mechanisms, making it a significant greenhouse gas. The study found that increased ozone in the lower atmosphere caused 60% of the overall ozone-induced warming seen in Southern Ocean waters.
A new study reveals that smoke from major wildfires can destroy atmospheric ozone in the Southern Hemisphere for months. Researchers warn that more frequent wildfires with a changing climate will lead to increased damage and exposure to harmful ultraviolet radiation.
A new study published by the American Psychological Association found a link between ozone levels and an increase in depressive symptoms in adolescents. Higher ozone levels were associated with significant increases in depressive symptoms over time, even in neighborhoods that met air quality standards.
Astronomers have found that the HR 6819 system, once thought to be the closest black hole to Earth, is actually a binary system without a black hole. The discovery was made using new data from ESO's Very Large Telescope and Multi Unit Spectroscopic Explorer instruments.
A research team at KIMS developed a plasma air conditioning technology that can inactivate COVID-19 aerosol in real-time, verifying 99.8% virus inactivation. The technology uses dielectric filter discharge to remove reactive oxygen species and keeps ozone emission below regulation levels.
A recent analysis of the 2017 GW170817 merger suggests that a rapid spin delay may have prolonged the merger, producing excess X-ray emissions. The radiation is thought to be produced by shocked material in the circumbinary medium, hinting at a bounce from the delayed collapse.
Researchers found a chemical link between wildfire smoke and ozone depletion, which may stall ozone recovery for years. The study discovered that the smoke from Australian wildfires in 2019-2020 depleted ozone by 1%, highlighting the potential impact of future, more frequent fires.
For the first time, scientists have measured a large difference between a black hole's rotation axis and the axis of its orbiting binary star system. This finding forces astronomers to add a new dimension to their models, offering new insights into black hole formation and physics.
Researchers from the University of Turku found that a black hole's axis of rotation is tilted more than 40 degrees relative to the orbiting stellar body. This extreme misalignment challenges current theoretical models and opens up new prospects for studying black hole formation and evolution.
Researchers at NIMS have created a diamond field-effect transistor (FET) with high hole mobility, reducing conduction loss and increasing operational speed. The FET's normally-off behavior also makes it safer for electronic devices.
A new simulation suggests that energy released near a black hole's event horizon during magnetic field line reconnection powers the intense flares. The process involves interactions between the magnetic field and material falling into the black hole, releasing hot plasma particles that radiate away as photons.
A recent study by researchers at Hefei Institutes of Physical Science found that local ozone generation was greatly underestimated under high NOx conditions. They observed higher HOx levels using a self-developed instrument and attributed the discrepancy to complex carbonyls-related oxidation under elevated photochemistry.
A new study from UC Berkeley suggests that copper in soil and seawater acts as a catalyst for producing two potent halocarbon compounds that destroy ozone. The compounds, methyl bromide and methyl chloride, are major contributors to stratospheric ozone depletion and have puzzled scientists for over 20 years.
A recent study found that large wildfires and severe heat events worsen air pollution across the western United States, affecting 68% of the region's population in one day. The study revealed an increasing trend in days with high levels of both particulate matter and ozone, tied to rising temperatures and wildfires.
Astronomers captured the most comprehensive image of radio emission from a supermassive black hole in the Centaurus A galaxy, powered by in-falling gas. The eruption extends eight degrees across the sky, spanning 16 full moons, and reveals spectacular new details of the radio emission.
A new CU Boulder study reveals that iodine from desert dust can decrease ozone air pollution but prolong greenhouse gas lifetimes. The finding has significant implications for air quality and climate, forcing researchers to re-evaluate how particles from land impact the atmosphere's chemistry.