Category archives: Technology

Parallel-channel nanocryotrons in magnetic fields

Parallel-channel nanocryotrons in magnetic fields

Condensed matterNanotechnologyParticle physicsPhysics

By César Tomé

Superconductors can carry large electrical currents without any resistance. One situation where they don’t carry currents without resistance is when there is too much current. By designing microscopic electronic components made from very thin superconductors, researchers can use this effect to create a switch, like a transistor. Nanowire superconducting switching devices (called nanocryotrons, or nTrons […]

The building block for magnetoelectric spin-orbit logic

The building block for magnetoelectric spin-orbit logic

Computer scienceCondensed matterMaterials

By César Tomé

Complementary metal–oxide–semiconductor (CMOS) is a type of metal–oxide–semiconductor field-effect transistor (MOSFET) fabrication process that uses complementary and symmetrical pairs of p-type and n-type MOSFETs for logic functions. CMOS technology is used for constructing integrated circuit chips, including microprocessors, microcontrollers, memory chips, and other digital logic circuits. After 50 years of continuous transistor size downscaling and […]

Simple explanations for some complex patterns in twisted bilayer graphene

Simple explanations for some complex patterns in twisted bilayer graphene

DIPC Advanced materialsMaterials

By DIPC

Twisted bilayer and multilayer systems represent two-dimensional materials, where atom-thick layers of the same or different materials are superimposed and rotated by an arbitrary twist angle. Twisted bilayer graphene (TBG) represents arguably the most prominent physical system of this kind, the bilayers of transition metal dichalcogenides (TMD) the other. The effect of twisting two periodic […]

Atomic force images beyond the fundamental limit

Atomic force images beyond the fundamental limit

Computer scienceMaterialsPhysics

By César Tomé

Atomic force microscopy, or AFM, is a widely used technique that can quantitatively map material surfaces in three dimensions, but its accuracy is limited by the size of the microscope’s probe. A new AI technique overcomes this limitation and allows microscopes to resolve material features smaller than the probe’s tip. A new deep learning algorithm […]

The stabilizing effect of a binder for transition metal oxides to sustain water oxidation in acidic environments

The stabilizing effect of a binder for transition metal oxides to sustain water oxidation in acidic environments

CatalysisChemistryDIPC Advanced materialsMaterials

By DIPC

Global energy demand is expected to rise around 30% by 2040 according to the International Energy Agency (IEA). Hydrogen (H2) produced by the electrolysis of water, using renewable electricity, the so-called green hydrogen, has emerged as a promising energy vector to respond to this increasing energy demand with the potential to decarbonize transportation, heating, and […]

Fit-to-purpose power sources: portable batteries ecodesigned within the planetary boundaries

Fit-to-purpose power sources: portable batteries ecodesigned within the planetary boundaries

EnergyMaterials

By BCMaterials

Digital technologies have gained an essential role in societies’ development, by generating a global transformation in economic, social, and environmental dimensions. Digitalization does not just bring comfort and effectiveness in daily life but also contributes to equity and opportunities generation. However, this digital transformation is raising a fierce debate on how to ensure a positive […]

Electron-cyclotron plasma generation and spectrum characterization

Electron-cyclotron plasma generation and spectrum characterization

Physics

By Invited Researcher

Ernest Lawrence was awarded the Nobel Prize in Physics in November 1939 “for the invention and development of the cyclotron and for results obtained with it, especially with regard to artificial radioactive elements”. His invention was based on generating a spiral accelerated trajectory of protons governed by a simple alternating radio frequency voltage together with […]

Quantum entanglement among quarks

Quantum entanglement among quarks

Computer scienceParticle physicsQuantum physics

By César Tomé

Collisions of high energy particles produce “jets” – quarks, antiquarks, or gluons moving through the quantum vacuum. Due to the confinement property of strong interactions, quarks are never directly detected but instead fragment into many secondary particles. Scientists have long expected that as jets propagate through the confining quantum vacuum, they will modify that vacuum […]