Researchers at Chalmers University of Technology have developed a method to manipulate light using metamaterials, allowing it to follow any predetermined path along a surface. This innovation has vast applications in optical chips for reliable data delivery and faster routers.
Researchers have predicted a testable figure for the spectral index, which could confirm their theory that the speed of light was variable in the early universe. The team's model suggests a value of 0.96478, close to current estimates, and could lead to modifications of Einstein's theory of gravity.
Astronomers have discovered a large population of distant dwarf galaxies that could reveal details about star formation in the early universe. These galaxies are 10 to 100 times fainter than previously observed galaxies, but produce more than half of the ultraviolet light during this era.
Dusa McDuff and Dietmar Salamon will receive the 2017 AMS Steele Prize for Exposition for their comprehensive book on J-holomorphic curves and symplectic topology. The prize recognizes their contributions to the field, which has rapid development since Mikhael Gromov's introduction of J-holomorphic curves in 1985.
Researchers at Massachusetts General Hospital discovered that stimulating dopamine neurons in mice receiving general anesthesia triggers signs of arousal, including movement and increased respiratory rate. This finding could lead to the development of new therapies to treat conditions like traumatic brain injury and coma.
Researchers found that supersonic solitary waves in nano-electronics crystals can be used for electric charge or matter transport and energy storage with extremely low heat dissipation. These localized excitations could lead to the development of transistors without silicon, revolutionizing the field of nano-electronics.
Activating dopamine neurons in the ventral tegmental area of the brain causes active emergence from general anesthesia. This could lead to faster recovery times and reduced side effects for patients. The researchers are now conducting further experiments to confirm these findings and develop a new treatment.
The LIGO Scientific Collaboration detected gravitational waves that could have been caused by the collision of two black holes. Researchers used theoretical models to test whether these signals could also be produced by gravastars, hypothetical objects proposed as an alternative to black holes.
The 1950s saw significant advancements in gravity physics through experiments, transforming it into an accepted field of physical science. Robert Dicke's research group pioneered this shift, uncovering empirical evidence that substantiates Einstein's general relativity theory.
A rapid blood test using a finger prick can detect serious infections in children within minutes, allowing general practitioners to diagnose more quickly. The test, which measures C-reactive protein levels, is not meant for all ill children but can help identify those with serious symptoms.
The winners of the 2016 Kavli Prize in Astrophysics reveal their 40-year journey to detect gravitational waves. They share their insights on the challenges and breakthroughs in eavesdropping on space-time ripples, which have captured the world's imagination.
Researchers aim to develop a recipe for solving runaway electron problems using simulations and data from worldwide experiments. The Simulation Center for Runaway Electron Avoidance and Mitigation will explore causes and solutions for relativistic runaway electrons traveling at nearly the speed of light.
Researchers from LMU Munich analyzed data from the Sloan Digital Sky Survey to calculate the dynamics of cosmic voids. Their findings demonstrate that the analysis of voids is a suitable approach to investigating gravity in empty regions and determining the total density of matter in the universe.
Researchers have developed a new strategy to probe the nature of gravity and dark energy by studying the empty spaces in between galaxies. The study found that analyzing cosmic voids improves measurements of how visible matter clusters together, bringing astronomers closer to testing Einstein's general theory of relativity.
Researchers at PPPL have developed a new method that analyzes the plasma surrounding X-ray pulsars by coupling quantum mechanics with Einstein's special relativity. This technique can determine the density and field strength of the magnetosphere in greater detail than standard approaches.
The LIGO-Virgo collaboration's detection of binary black holes could be evidence of primordial black holes formed after the Big Bang. The observation would guide theories about the universe's early days and provide crucial clues about dark matter.
Rochester Institute of Technology professors Carlos Lousto and Manuela Campanelli have won separate grants worth $600,000 and $435,000 to advance gravitational wave astronomy. The funding will support research on black hole mergers and develop software tools for computational astrophysics.
Researchers at UCSB have uncovered a link between classical chaos and quantum entanglement using controllable quantum systems. Their findings suggest that thermalization is the driving force behind both chaos and entanglement in quantum systems, with implications for quantum computing.
Physicists have devised a method to distinguish black holes from compact massive objects using the energy spectrum of particles moving in their vicinity. The method involves studying the behavior of scalar particles near these objects and finding discrete energy levels, which are absent in the case of black holes.
Researchers develop new method to detect and measure black hole superkicks using gravitational waves, which occur when two spinning supermassive black holes collide. eLISA space-based detector expected to detect several runaway black holes upon launch in 2034.
Researchers at RIT create a faster and more accurate way to assess gravitational wave signals, inferring the sources that made them. They use numerical simulations of binary black holes to extract information directly from the data, improving accuracy over previous approximations.
Researchers use new computer codes to create accurate models of the universe and its contents, shedding light on the evolution of the universe and the growth of structure within it. The study confirms that small-scale structures produce significant effects on larger distance scales, providing new insights into gravity and cosmology.
Computer simulations of evolving binary stars predict the formation of massive black hole binaries that can be detected by LIGO. The simulations show a high likelihood of these events occurring due to the production of low-metallicity stars in the early universe.
Researchers have developed a new squeezed vacuum source that can reduce phase noise in laser interferometers, enabling the detection of weaker gravitational waves. This advancement could enable the observation of more faint signals from distant events, including neutron star collisions.
A new study in Nature predicts hundreds of massive black hole mergers each year observable with the second generation of gravitational wave detectors. The model takes into account differences in binary black hole production across the universe.
The Laser Interferometer Gravitational-wave Observatory has detected a second pair of colliding black holes, validating the landmark discovery from earlier this year. RIT scientists played a crucial role in identifying and analyzing the gravitational wave signal, revealing diverse sizes and spins among black holes in the universe.
The detection confirms the existence of binary black holes with a range of masses, forming from different stars. The event provides valuable data on gravitational waves and the nature of gravity, shedding light on the universe's most violent cosmic events.
Astronomers have discovered a new 'Canarias Einstein ring', a rare and unusual phenomenon that provides insight into the composition of distant galaxies. The discovery was made using data from the Gran Telescopio CANARIAS (GTC) and offers valuable information about the structure of gravitational fields and dark matter in galaxy lenses.
A team of physicists has developed a new method to calculate the thermodynamics of black holes, leveraging quantum gravity and holographic principles. The study proposes that a 'condensate' of space quanta can describe homogeneous classical geometries, allowing for a more realistic and robust calculation of black hole entropy.
Researchers demonstrate that rotational motion in the universe follows general relativity principles, connecting it to dark energy content and inertial dragging. The study yields a prediction that 73.7% of the present content of the universe is in the form of dark energy.
A team of researchers has created a 3D map of 3000 galaxies 13 billion light years away, finding that Einstein's general theory of relativity is still accurate. The study suggests the expansion of the universe could be explained by a cosmological constant.
Researchers found that moderate sedation leads to better clinical outcomes, including lower 30-day mortality and shorter hospital stays, compared to general anesthesia. The study of over 10,997 patients suggests that moderate sedation is both safe and effective for TAVR procedures.
The Gruber Foundation Cosmology Prize recognizes the first observation of gravitational waves by the LIGO team, confirming a key prediction of Einstein's theory of general relativity. This achievement opens up new means of studying the universe and provides direct evidence for the existence of black holes.
Researchers used the light echo technique to measure the distance from a young star to the inner edge of its surrounding protoplanetary disk. The study found the inner edge to be relatively thick and determined a distance of approximately 0.08 astronomical units, consistent with theoretical expectations.
Physicists have long struggled to reconcile classical physics and quantum mechanics. New research by Stefano Liberati and colleagues proposes a scenario that preserves special relativity while introducing non-local effects. The model suggests space-time becomes granular at tiny scales, allowing for experimental testing of its predictions.
Physicists at Cornell University have finally solved a puzzle that baffled researchers for over a century. Using computer game technology, they discovered the connection between smectics - liquid crystals forming ellipses and hyperbolas - and martensites, a crystalline structure of steel.
Workloads in general practice have increased by 16% over the past 7 years, with more frequent and longer consultations. The authors warn that the increases are unsustainable and that general practice in England is approaching a saturation point.
General practice workloads in England have increased by 16% over seven years, with more frequent and longer consultations, according to a large-scale analysis. The study's findings suggest the system is approaching saturation point due to low recruitment rates and an ageing population with complex needs.
Two new studies found that life expectancy for people with type 1 diabetes has not decreased compared to the general population over the past few decades. The gap in life expectancy remained constant, with an estimated 12-13 years less life expectancy at birth for those with T1D.
A recent study by University of Georgia researchers found that national party division and divisive state primaries significantly impact general election outcomes. In the current election cycle, a divided Republican Party could lose up to 4.5% of the general election vote, compared to a unified party.
Researchers successfully simulated the Unruh effect using an NMR quantum simulator, replicating theoretical predictions and creating new quantum correlations. The study paves the way for exploring accelerated systems in black hole physics, cosmology, and particle physics.
Researchers accurately measured the rotational rate of an 18 billion solar mass supermassive black hole, one-third of the maximum spin rate allowed in General Relativity. The binary black hole model reveals a smaller companion orbiting around it, affecting accretion disk behavior.
Physicists at Université de Genève developed a new code that simulates the rotation of space-time and gravitational waves in the formation of large-scale structures. This allows for more precise calculations than current codes, enabling the study of dark energy's role in the universe's expansion.
The special theory of relativity has been found to be theoretically disproved, leading to questions about related physics theories. The paper reveals that experiments initially thought to demonstrate relativistic effects actually show null or incorrect results.
A study found that kindergarten general knowledge is the strongest predictor of first-grade and third-grade science achievement. Children's science achievement gaps persist from third to eighth grade, with low-income and minority students facing larger gaps.
A University of Leicester study finds that GPs and hypertension detection are associated with lower premature mortality in England. In less deprived practices, continuity of care was also linked to lower mortality rates.
RIT researchers are investigating properties of binary black hole mergers and inferring the rate of such mergers based on their implications for the gravitational wave background. They aim to detect a range of signals from unexplained bursts to a background 'hum' from the distant universe.
Researchers simulated a thin ring-shaped black hole in five dimensions, which breaks down Einstein's general theory of relativity if it exists outside an event horizon. The simulation revealed the formation of a 'naked singularity', causing laws of physics to break down and potentially rendering general relativity ineffective.
A team of astronomers searched for visible light after the first direct detection of gravitational waves by LIGO, but found none. The Dark Energy Camera was rapidly pointed at the location of the event, using large telescopes to scan a vast sky area.
An international team of scientists including UMD physicists confirms Einstein's prediction of gravitational waves in a binary black hole merger event. This detection marks a major breakthrough in the field of gravitational wave research and offers insights into gravity and the universe.
Scientists have observed ripples in spacetime, called gravitational waves, arriving from a cataclysmic event in the distant universe. This confirms a major prediction of Albert Einstein's general theory of relativity, providing information about gravity and its nature.
Scientists have observed ripples in spacetime called gravitational waves, providing insight into the nature of gravity. The detection was made possible by improved LIGO detectors, allowing for increased sensitivity and a larger volume of the universe to be probed.
Scientists observed ripples in spacetime called gravitational waves from colliding black holes, confirming a major prediction of Albert Einstein's general theory of relativity. The detected waves were produced during the merger of two black holes, with masses about 29 and 36 times that of the sun.
The Laser Interferometer Gravitational-Wave Observatory (LIGO) has detected ripples in space-time, also known as gravitational waves, for the first time on Earth. This breakthrough opens a new window into the universe and revolutionizes our understanding of violent cosmic events.
Rochester Institute of Technology researchers' 2005 breakthrough prediction of gravitational waves has been confirmed by LIGO. Their work introduced a revolutionary new way to understand the universe through gravitational wave astronomy, opening up frontiers in the field.
Child abuse exposure higher in Canadian military personnel than the general population, associated with increased odds of suicidal ideation and behaviors. The study suggests prevention efforts targeting child abuse exposure may help reduce suicide-related outcomes in both military and civilian populations.
Two studies found that physicians receive less intense end-of-life treatments and are less likely to die in a hospital than the general population. Physicians were also more likely to prefer dying at home and had a different location of death compared to other healthcare professionals and the general population.
Researchers used intensity interferometry to study light propagation in curved spaces, demonstrating the importance of surface curvature on geometry and physics. The findings have implications for astronomical observations and manufacturing techniques, potentially leading to new materials and optical systems.
Researchers developed a new method to test Einstein's General Relativity using brief blasts of rare radio signals from space called Fast Radio Bursts. This method is considered a significant tribute to Einstein on the 100th anniversary of his first formulation of the Equivalence Principle.
Scientists have found a way to solve complex problems using a quantum computer traveling along 'open timelike curves' without breaking the laws of causality. This breakthrough allows for supercomputational power while maintaining the integrity of quantum principles.