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February 20, 2021
Nanotechnology Now Our NanoNews Digest Sponsors Home > Press > Electrons living on the edge: Researchers at the University of Tsukuba use theoretical calculations to predict the possibility of massless electrons in topological insulators excited with lasers, which may lead to faster and more efficient electronic devices Abstract: Scientists at the University of Tsukuba demonstrated the possibility of electrons moving as if they were massless when certain materials called "topological insulators...
February 20, 2021
Our NanoNews Digest Sponsors Home > Press > Blueprint for fault-tolerant qubits: Scientists at Forschungszentrum Jülich and RWTH Aachen University have designed a circuit for quantum computers which is naturally protected against common errors Proposed hardware implementation of the QEC code. The circuit consists of two Josephson junctions coupled by a gyrator, highlighted in red. CREDIT M. Rymarz et al., Phys Rev X (2021), https://doi.org/10.1103/PhysRevX.11.011032 (CC BY 4.0) Abstract: Build...
February 20, 2021
Nanotechnology Now Our NanoNews Digest Sponsors Home > Press > A speed limit also applies in the quantum world: Study by the University of Bonn determines minimum time for complex quantum operations First author Manolo Rivera Lam (left) and principal investigator Dr. Andrea Alberti (right) at the Institute of Applied Physics at the University of Bonn. CREDIT © Volker Lannert/Uni Bonn Abstract: Even in the world of the smallest particles with their own special rules, things cannot proceed infin...
February 13, 2021
Our NanoNews Digest Sponsors Home > Press > Nanowire could provide a stable, easy-to-make superconducting transistor: Inspired by decades-old MIT research, the new technology could boost quantum computers and other superconducting electronics Abstract: Superconductors materials that conduct electricity without resistance are remarkable. They provide a macroscopic glimpse into quantum phenomena, which are usually observable only at the atomic level. Beyond their physical peculiarity, super...
February 13, 2021
Nanotechnology Now Home > Press > Scientists manipulate magnets at the atomic scale The researchers used ultrashort laser pulse excitation to optically stimulate specific atomic vibrations of the magnets crystal lattice CREDIT Lancaster University Abstract: Fast and energy-efficient future data processing technologies are on the horizon after an international team of scientists successfully manipulated magnets at the atomic level. Scientists manipulate magnets at the atomic scale Lancaster, UK ...
February 8, 2021
News Highlights: Global flip chip Technology Market trends and growth outlook 2021-2026 | Intel Corp., Samsung Electronics, Texas Instruments, Global New
January 29, 2021
Nanotechnology Now Home > Press > Going Organic: uOttawa team realizing the limitless possibilities of wearable electronics Dr. Benoît Lessard says that organic electronics are the best technology for creating wearable sensors and artificial skin Abstract: Benoît Lessard and his team are developing carbon-based technologies which could lead to improved flexible phone displays, make robotic skin more sensitive and allow for wearable electronics that could monitor the physical health of athlete...
January 28, 2021
Share this article Share this article ResearchAndMarkets.coms offering. In March 2020, The World Health Organization declared COVID-19 a global pandemic. Within a few weeks, it was clear that the pandemic was highly likely to cause the worlds worst recession in the last 100 years. In June 2020, the World Bank published a baseline forecast envisioning a 5.2% contraction in global GDP in 2020. Against this backdrop, the report delivers the best estimate of the global market for physical security...
January 22, 2021
Nanotechnology Now Home > Press > Bringing Atoms to a Standstill: NIST Miniaturizes Laser Cooling January Credit: NIST Illustration of a new optical system to miniaturize the laser cooling of atoms, a key step towards cooling atoms on a microchip. A beam of laser light is launched from a photonic integrated circuit (PIC), aided by an element called an extreme mode converter (EMC) that greatly expands the beam. The beam then strikes a carefully engineered, ultrathin film known as a metasurface (...
January 16, 2021
Nanotechnology Now Home > Press > New way to control electrical charge in 2D materials: Put a flake on it Physicists at Washington University in St. Louis have discovered how to locally add electrical charge to an atomically thin graphene device by layering flakes of another thin material, alpha-RuCl3, on top of it. Here, a layered device transfers electric charge. CREDIT (Image courtesy Nano Letters) Abstract: Physicists at Washington University in St. Louis have discovered how to locally add ...