Search results: quantum dots

Quantum dots reveal entropy production

Quantum dots reveal entropy production

Condensed matterNanotechnology

By Mapping Ignorance

In order to build the computers and devices of tomorrow, we have to understand how they use energy today. That’s harder than it sounds. Memory storage, information processing, and energy use in these technologies involve constant energy flow—systems never settle into thermodynamic balance. To complicate things further, one of the most precise ways to study […]

Quantum dots as analog simulators of long-range interactions

Quantum dots as analog simulators of long-range interactions

DIPC Quantum Systems

By DIPC

In most physical systems, particles interact locally or at short distances only. Still, l ong-range interactions, like electromagnetic forces, play a crucial role in quantum physics and chemistry. They are a key ingredient for many phenomena, from molecular binding to high-temperature superconductivity. While their exact treatment in quantum many-body systems remains numerically challenging, analog quantum […]

The unexpectedly rich excited-state dynamics of quantum dots in plasmonic cavities

The unexpectedly rich excited-state dynamics of quantum dots in plasmonic cavities

CFMDIPCDIPC Photonics

By DIPC

Plasmonic cavities formed by metallic surfaces are nanostructures that confine light to dimensions far smaller than the free-space wavelength, as they mix optical fields with electronic excitations. I t was not until the 1990s, with the appearance of accurate and reliable nanofabrication techniques, that plasmonics blossomed. It was found then that local fields around nanostructures […]

Quantum dots embedded in graphene nanoribbons

Quantum dots embedded in graphene nanoribbons

ChemistryCondensed matterMaterialsNanotechnology

By DIPC

Graphene nanoribbons (GNRs), are strips of graphene with ultra-thin width (<50 nm). Graphene ribbons were introduced as a theoretical model by Mitsutaka Fujita and coauthors to examine the edge and nanoscale size effect in graphene. GNRs are very interesting structures, partly due to their attractive electronic properties. Those properties vary dramatically with changes in the […]

Darker than black quantum dots

Darker than black quantum dots

ChemistryMaterials

By DIPC

A quantum dot is a nanometric crystalline structure of semiconductor materials. In a quatum dot electrons are confined in a region of space, thus creating a well defined structure of energy levels that depends very much on the size and shape of the quantum dot. This structure resembles that of atoms, that is why sometimes […]

The silicon advantage: How semiconductor manufacturing aims to solve the quantum computing scaling challenge

The silicon advantage: How semiconductor manufacturing aims to solve the quantum computing scaling challenge

Computer scienceMaterials

By Invited Researcher

The material at the heart of the digital revolution, silicon, is now a leading candidate for building large-scale quantum computers. This strategy leverages the most mature and powerful manufacturing technology on Earth to control the fundamental quantum property of an electron: its spin. Recent breakthroughs in silicon-based spin qubits have demonstrated gate fidelities that meet […]

Correlated electron-phonon physics in nanotube quantum simulators

Correlated electron-phonon physics in nanotube quantum simulators

DIPC Quantum SystemsQuantum physics

By DIPC

In the search for novel materials, the simulation of quantum matter is an extremely demanding computational task, which is expected to profit substantially from the surge of quantum technologies. Quantum algorithms for programmable quantum computers offer the most flexible approaches, but tailor-made quantum simulators are particularly well suited for large-scale simulations. For instance, tremendous efforts […]

The dawn of the quantum network: quantum interference over 300 km of optical fiber

The dawn of the quantum network: quantum interference over 300 km of optical fiber

Computer scienceCondensed matterPhysicsQuantum physics

By César Tomé

Last year’s Nobel Prize in Physics celebrated the fundamental interest of quantum entanglement, and also envisioned the potential applications in “the second quantum revolution” — a new age when we are able to manipulate the weirdness of quantum mechanics, including quantum superposition and entanglement. A large-scale and fully functional quantum network is the holy grail […]

High temperatures and strong random interactions need not destroy many-body quantum entanglement

High temperatures and strong random interactions need not destroy many-body quantum entanglement

Condensed matterQuantum physics

By DIPC

One of the most mysterious features of quantum mechanics is that if two particles (or photons) interact at some point in time then the properties of these particles will remain connected at future times. A consequence of this is that determining the quantum state of one of the particles simultaneously determines the quantum state of […]

Metal atoms enhance quantum dot coupling in metal-organic nanoporous networks

Metal atoms enhance quantum dot coupling in metal-organic nanoporous networks

ChemistryCondensed matterMaterialsQuantum physics

By DIPC

A quantum dot (QD) is a nanometric crystalline structure of semiconductor materials. In a QD electrons are confined in a region of space, thus creating a well defined structure of energy levels that depends very much on the size and shape of the quantum dot. This structure resembles that of atoms, that is why sometimes […]