Problème de la mesure quantiqueLe problème de la mesure quantique consiste en un ensemble de problèmes, qui mettent en évidence des difficultés de corrélation entre les postulats de la mécanique quantique et le monde macroscopique tel qu'il nous apparaît ou tel qu'il est mesuré.
Quantum networkQuantum networks form an important element of quantum computing and quantum communication systems. Quantum networks facilitate the transmission of information in the form of quantum bits, also called qubits, between physically separated quantum processors. A quantum processor is a small quantum computer being able to perform quantum logic gates on a certain number of qubits. Quantum networks work in a similar way to classical networks. The main difference is that quantum networking, like quantum computing, is better at solving certain problems, such as modeling quantum systems.
Nuclear magnetic resonance quantum computerNuclear magnetic resonance quantum computing (NMRQC) is one of the several proposed approaches for constructing a quantum computer, that uses the spin states of nuclei within molecules as qubits. The quantum states are probed through the nuclear magnetic resonances, allowing the system to be implemented as a variation of nuclear magnetic resonance spectroscopy. NMR differs from other implementations of quantum computers in that it uses an ensemble of systems, in this case molecules, rather than a single pure state.
Simulateur quantiquevignette|Sur cette photo d'un simulateur quantique, les ions sont fluorescents, ce qui indique que les qubits sont tous dans le même état ("1" ou "0"). Dans de bonnes conditions expérimentales, les ions du cristal prennent spontanément une structure triangulaire. Crédit: Britton/NIST vignette|Illustration de ions piégés : Le cœur du simulateur est un cristal de deux dimensions de ions de béryllium (sphères bleues); l'électron ultrapériphériques de chaque ion est un bits quantiques (flèches rouges).
Quantum tomographyQuantum tomography or quantum state tomography is the process by which a quantum state is reconstructed using measurements on an ensemble of identical quantum states. The source of these states may be any device or system which prepares quantum states either consistently into quantum pure states or otherwise into general mixed states. To be able to uniquely identify the state, the measurements must be tomographically complete. That is, the measured operators must form an operator basis on the Hilbert space of the system, providing all the information about the state.
Virtual photonVirtual photons are a fundamental concept in particle physics and quantum field theory that play a crucial role in describing the interactions between electrically charged particles. Virtual photons are referred to as "virtual" because they do not exist as free particles in the traditional sense but instead serve as intermediate particles in the exchange of force between other particles. They are responsible for the electromagnetic force that holds matter together, making them a key component in our understanding of the physical world.
Unitary transformation (quantum mechanics)In quantum mechanics, the Schrödinger equation describes how a system changes with time. It does this by relating changes in the state of system to the energy in the system (given by an operator called the Hamiltonian). Therefore, once the Hamiltonian is known, the time dynamics are in principle known. All that remains is to plug the Hamiltonian into the Schrödinger equation and solve for the system state as a function of time. Often, however, the Schrödinger equation is difficult to solve (even with a computer).
Plasmon de surface localisévignette|300x300px| Lumière incidente sur une nanoparticule métallique fait osciller les électrons de la bande de conduction. C'est le plasmon de surface localisé. Un plasmon de surface localisé (LSP) est le résultat du confinement d'un plasmon de surface dans une nanoparticule de taille comparable ou inférieure à la longueur d'onde de la lumière utilisée pour exciter le plasmon. Lorsqu'une petite nanoparticule métallique sphérique est irradiée par la lumière, le champ électrique oscillant fait osciller de manière cohérente les électrons de conduction.
Quantum dot solar cellA quantum dot solar cell (QDSC) is a solar cell design that uses quantum dots as the captivating photovoltaic material. It attempts to replace bulk materials such as silicon, copper indium gallium selenide (CIGS) or cadmium telluride (CdTe). Quantum dots have bandgaps that are adjustable across a wide range of energy levels by changing their size. In bulk materials, the bandgap is fixed by the choice of material(s).
GravitonLe graviton est une particule élémentaire hypothétique qui transmettrait la gravité, prévue dans la plupart des systèmes de gravité quantique. Il serait donc le quantum de la force gravitationnelle. En langage courant, on peut dire que les gravitons sont les messagers de la gravité, ou les supports de la force. Pour matérialiser cette force, on pourrait prendre l'exemple d'une fronde avec la ficelle (graviton) qui tient la pierre. Plus il y en a dans un champ gravitationnel, plus ce champ est puissant.