Last update:

Fundamental quantum model recreated from nanographenes

The smallest unit of information in a computer is the bit: on or off, 1 or 0. Today, the world's entire computing power is built on the combination and interconnection of countless ones and zeros. Quantum computers have their ...

More news

Nanophysics
Graphene-based memristors move a step closer to benefiting next-generation computing
Nanophysics
AI-enhanced technique illuminates materials reactions at nanoscale
Nanophysics
Novel platform integrates 2D polaritons with detection system for miniaturized spectrometers
Nanophysics
Viscous electronics: Fluid-like electrons are unlocking new tech possibilities
Nanophysics
Controlling sound waves with Klein tunneling improves acoustic signal filtration
Nanophysics
Fast-responding colorimetric sensor for real-time monitoring has expanded color gamut
Nanophysics
Adaptive ferroelectric materials show promise for energy-efficient supercomputing
Nanophysics
Diamond bonding technique could improve both quantum and conventional electronics
Nanophysics
Researchers achieve tunable coherent population trapping in a double quantum dot system
Nanophysics
Research team creates hybrid resonant metasurfaces with configurable structural colors
Nanophysics
Researchers discover tunable 2D electron gas at heterointerface of 5d iridates
Nanophysics
3D printing method could improve micro energy storage
Nanophysics
Engineering perovskite materials at the atomic level paves way for new lasers, LEDs
Nanophysics
A quantum material could be the future of high-energy X-ray imaging and particle detection
Nanophysics
Finely regulated luminescent Ag-In-Ga-S quantum dots with green-red dual emission toward white LEDs
Nanophysics
A new plasma-based technological design boosts graphene production by more than 22%
Nanophysics
Novel visible light communication encryption technology uses chiral nanoparticles
Nanophysics
Peptides and plastics combine for energy-efficient materials
Nanophysics
Reducing energy loss in metal nanostructures by altering geometrical dimensions
Nanophysics
Nanoscale method boosts materials for advanced memory storage

Other news

Earth Sciences
New model can predict marine heat waves, extreme ocean acidity months in advance
Plants & Animals
Mathematical modeling reveals the explosive secret of the squirting cucumber
Astronomy
Sombrero Galaxy dazzles in new Webb images and video
Molecular & Computational biology
Framework uncovers what makes large numbers of 'squishy' grains start flowing in biological processes
Planetary Sciences
Planetary scientist proposes an alternative theory for what lies beneath the surfaces of Uranus and Neptune
Plants & Animals
The Amborella genome: A window into the origins of plant sex and reproduction
Astronomy
XRISM mission looks deeply into 'hidden' stellar system
Earth Sciences
New AI tool generates realistic satellite images of future flooding
Cell & Microbiology
New mechanism in bacterial DNA enzyme opens pathways for antibiotic development
Astronomy
Record-breaking run on Frontier sets new bar for simulating the universe in exascale era
Cell & Microbiology
Cyanobacterial circadian clock uses an AM radio-like mechanism to control cellular processes
Cell & Microbiology
Scientists develop AI tool for personalized phage therapy as a targeted alternative to antibiotics
Astronomy
Astronomers discover a rare group of dwarf galaxies
Cell & Microbiology
Exploring life at its simplest: Scientists create a 'minimal cell membrane' with just two lipids
Plants & Animals
Long-term study reveals warming climates threaten Florida scrub-jay
Archaeology
Oldest US firearm unearthed in Arizona, a bronze cannon linked to Coronado expedition
Optics & Photonics
Brighter and more efficient LEDs with low polarization resist 'efficiency droop'
Social Sciences
By first grade, children begin to perceive collective punishment as unfair
Archaeology
Herodotus' theory on Armenian origins debunked by first whole-genome study
Ecology
Wood ants that actively combat plant diseases could be used in organic apple orchards

Tracking the dynamics of biomolecules with optofluidic antennas

In order to better understand fundamental processes in life science at the molecular level, the precise observation of single molecule dynamics is of utmost interest. However, current techniques based on fluorescence measurements ...