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Categories: Energy: Nuclear, Physics: Optics

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Chemistry: Biochemistry Engineering: Nanotechnology Physics: Optics
Published

Nanoscale device simultaneously steers and shifts frequency of optical light, pointing the way to future wireless communication channels      (via sciencedaily.com)     Original source 

A tunable metasurface can control optical light in space and time, offering a path toward new ways of wirelessly and securely transmitting large amounts of data both on Earth and in space.

Chemistry: Biochemistry Chemistry: Inorganic Chemistry Energy: Nuclear Offbeat: General Physics: General
Published

A new way to make element 116 opens the door to heavier atoms      (via sciencedaily.com)     Original source 

Researchers have successfully made super-heavy element 116 using a beam of titanium-50. That milestone sets the team up to attempt making the heaviest element yet: 120.

Chemistry: General Chemistry: Inorganic Chemistry Environmental: General Environmental: Water Geoscience: Environmental Issues Geoscience: Geochemistry Physics: Optics
Published

A promising new method uses light to clean up forever chemicals      (via sciencedaily.com)     Original source 

A room-temperature method to decompose perfluoroalkyl substances (PFASs) using visible LED light offers a promising solution for sustainable fluorine recycling and PFAS treatment.

Chemistry: General Chemistry: Thermodynamics Physics: Optics
Published

3D printing of light-activated hydrogel actuators      (via sciencedaily.com)     Original source 

An international team of researchers has embedded gold nanorods in hydrogels that can be processed through 3D printing to create structures that contract when exposed to light -- and expand again when the light is removed. Because this expansion and contraction can be performed repeatedly, the 3D-printed structures can serve as remotely controlled actuators.

Energy: Nuclear Physics: General
Published

Come closer: Titanium-48's nuclear structure changes when observed at varying distances      (via sciencedaily.com)     Original source 

Researchers have found that titanium-48 changes from a shell model structure to an alpha-cluster structure depending on the distance from the center of the nucleus. The results upend the conventional understanding of nuclear structure and are expected to provide clues to the Gamow theory on the alpha-decay process that occurs in heavy nuclei, which has not been solved for nearly 100 years.

Chemistry: Biochemistry Chemistry: General Chemistry: Thermodynamics Engineering: Nanotechnology Physics: Optics
Published

New technique pinpoints nanoscale 'hot spots' in electronics to improve their longevity      (via sciencedaily.com)     Original source 

Researchers engineered a new technique to identify at the nanoscale level what components are overheating in electronics and causing their performance to fail.

Biology: Biochemistry Biology: Cell Biology Biology: General Biology: Genetics Biology: Molecular Chemistry: Biochemistry Physics: Optics
Published

Immune system in the spotlight      (via sciencedaily.com)     Original source 

Our immune system is always on alert, detecting and eliminating pathogens and cancer cells. Cellular control mechanisms cause diseased cells to present antigens on their surface like signs for the immune system. For analysis of the necessary complex antigen processing and transport processes in real time, researchers have developed a 'cage' that is opened with light to release trapped antigens at a specific place and time.

Chemistry: Biochemistry Chemistry: General Chemistry: Inorganic Chemistry Engineering: Nanotechnology Physics: Optics
Published

Microbeads with adaptable fluorescent colors from visible light to near-infrared      (via sciencedaily.com)     Original source 

Researchers have successfully developed an environmentally friendly, microspherical fluorescent material primarily made from citric acid. These microbeads emit various colors of light depending on the illuminating light and the size of the beads, which suggests a wide range of applications. Furthermore, the use of plant-derived materials allows for low-cost and energy-efficient synthesis.

Chemistry: Biochemistry Computer Science: General Mathematics: General Offbeat: Computers and Math Offbeat: General Physics: General Physics: Optics
Published

Neural networks made of light      (via sciencedaily.com)     Original source 

Scientists propose a new way of implementing a neural network with an optical system which could make machine learning more sustainable in the future. In a new paper, the researchers have demonstrated a method much simpler than previous approaches.

Physics: General Physics: Optics Physics: Quantum Physics
Published

Light-induced Meissner effect      (via sciencedaily.com)     Original source 

Researchers have developed a new experiment capable of monitoring the magnetic properties of superconductors at very fast speeds.

Chemistry: Biochemistry Energy: Nuclear Physics: General
Published

Quadrupolar nuclei measured by zero-field NMR      (via sciencedaily.com)     Original source 

Researchers have achieved a breakthrough in zero-field nuclear magnetic resonance spectroscopy, paving the way towards benchmarking quantum chemistry calculations.

Chemistry: Inorganic Chemistry Engineering: Nanotechnology Physics: Optics
Published

High-speed electron camera uncovers a new 'light-twisting' behavior in an ultrathin material      (via sciencedaily.com)     Original source 

Using an instrument for ultrafast electron diffraction (MeV-UED), researchers discovered how an ultrathin material can circularly polarize light. This discovery sets up a promising approach to manipulate light for applications in optoelectronic devices.

Chemistry: Biochemistry Chemistry: General Chemistry: Inorganic Chemistry Computer Science: Quantum Computers Engineering: Nanotechnology Physics: General Physics: Optics Physics: Quantum Computing Physics: Quantum Physics
Published

Moving from the visible to the infrared: Developing high quality nanocrystals      (via sciencedaily.com)     Original source 

Awarded the 2023 Nobel Prize in Chemistry, quantum dots have a wide variety of applications ranging from displays and LED lights to chemical reaction catalysis and bioimaging. These semiconductor nanocrystals are so small -- on the order of nanometers -- that their properties, such as color, are size dependent, and they start to exhibit quantum properties. This technology has been really well developed, but only in the visible spectrum, leaving untapped opportunities for technologies in both the ultraviolet and infrared regions of the electromagnetic spectrum.

Chemistry: Biochemistry Energy: Technology Physics: Optics
Published

Implantable LED device uses light to treat deep-seated cancers      (via sciencedaily.com)     Original source 

Certain types of light have proven to be an effective, minimally invasive treatment for cancers located on or near the skin when combined with a light-activated drug. But deep-seated cancers have been beyond the reach of light's therapeutic effects. To change this, engineers and scientists have devised a wireless LED device that can be implanted. This device, when combined with a light-sensitive dye, not only destroys cancer cells, but also mobilizes the immune system's cancer-targeting response.

Energy: Fossil Fuels Energy: Nuclear Energy: Technology Environmental: General
Published

Pinpointing coal plants to convert to nuclear energy, considering both practicality and community support      (via sciencedaily.com)     Original source 

An assessment ranks the feasibility of converting 245 operational coal power plants in the U.S. into advanced nuclear reactors, providing valuable insights for policymakers and utilities to meet decarbonization goals, according to a new study.

Biology: Biochemistry Biology: Biotechnology Biology: Cell Biology Biology: General Chemistry: Biochemistry Chemistry: General Chemistry: Inorganic Chemistry Chemistry: Organic Chemistry Physics: General Physics: Optics
Published

Visualizing short-lived intermediate compounds produced during chemical reactions      (via sciencedaily.com)     Original source 

Immobilizing small synthetic molecules inside protein crystals proves to be a promising avenue for studying intermediate compounds formed during chemical reactions, scientists report. By integrating this method with time-resolved serial femtosecond crystallography, they successfully visualized reaction dynamics and rapid structural changes occurring within reaction centers immobilized inside protein crystals. This innovative strategy holds significant potential for the intelligent design of drugs, catalysts, and functional materials.

Engineering: Graphene Engineering: Nanotechnology Physics: General Physics: Optics
Published

Single atoms show their true color      (via sciencedaily.com)     Original source 

A new technique reveals single atom misfits and could help design better semiconductors used in modern and future electronics.

Chemistry: Biochemistry Chemistry: General Chemistry: Inorganic Chemistry Chemistry: Organic Chemistry Physics: Optics
Published

Using visible light to make pharmaceutical building blocks      (via sciencedaily.com)     Original source 

Chemists have discovered a way to use visible light to synthesize a class of compounds particularly well suited for use in pharmaceuticals. The class of compounds, called azetidines, had been previously identified as a good candidate to build therapeutic drugs, but the compounds are difficult to produce in chemical reactions. Now, a team has developed a method to produce a specific class of azetidines called monocyclic azetidines using visible light and a photocatalyst.

Physics: Optics
Published

Precise and less expensive 3D printing of complex, high-resolution structures      (via sciencedaily.com)     Original source 

Researchers have developed a new two-photon polymerization technique that uses two lasers to 3D print complex high-resolution structures. The advance could make this 3D printing process less expensive, helping it find wider use in a variety of applications, from consumer electronics to the biomedical field.

Biology: Biochemistry Biology: General Biology: Marine Chemistry: Biochemistry Ecology: Sea Life Energy: Alternative Fuels Physics: General Physics: Optics Physics: Quantum Computing Physics: Quantum Physics
Published

Giant clams may hold the answers to making solar energy more efficient      (via sciencedaily.com)     Original source 

Solar panel and biorefinery designers could learn a thing or two from iridescent giant clams living near tropical coral reefs, according to a new study. This is because giant clams have precise geometries -- dynamic, vertical columns of photosynthetic receptors covered by a thin, light-scattering layer -- that may just make them the most efficient solar energy systems on Earth.