Flux qubitIn quantum computing, more specifically in superconducting quantum computing, flux qubits (also known as persistent current qubits) are micrometer sized loops of superconducting metal that is interrupted by a number of Josephson junctions. These devices function as quantum bits. The flux qubit was first proposed by Terry P. Orlando et al. at MIT in 1999 and fabricated shortly thereafter. During fabrication, the Josephson junction parameters are engineered so that a persistent current will flow continuously when an external magnetic flux is applied.
Continuité uniformeEn topologie, la continuité uniforme (ou l'uniforme continuité) est une propriété plus forte que la continuité, et se définit dans les espaces métriques ou plus généralement les espaces uniformes. Contrairement à la continuité, la continuité uniforme n'est pas une notion « purement topologique » c'est-à-dire ne faisant intervenir que des ouverts : sa définition dépend de la distance ou de la structure uniforme. Le contexte typique de la définition de la continuité uniforme est celui des espaces métriques. N.
Randomness testA randomness test (or test for randomness), in data evaluation, is a test used to analyze the distribution of a set of data to see whether it can be described as random (patternless). In stochastic modeling, as in some computer simulations, the hoped-for randomness of potential input data can be verified, by a formal test for randomness, to show that the data are valid for use in simulation runs. In some cases, data reveals an obvious non-random pattern, as with so-called "runs in the data" (such as expecting random 0–9 but finding "4 3 2 1 0 4 3 2 1.
Générateur de nombres aléatoiresUn générateur de nombres aléatoires, random number generator (RNG) en anglais, est un dispositif capable de produire une suite de nombres pour lesquels il n'existe aucun lien calculable entre un nombre et ses prédécesseurs, de façon que cette séquence puisse être appelée « suite de nombres aléatoires ». Par extension, on utilise ce terme pour désigner des générateurs de nombres pseudo aléatoires, pour lesquels ce lien calculable existe, mais ne peut pas « facilement » être déduit.
Calcul quantique adiabatiqueLe calcul quantique adiabatique (en anglais, adiabatic quantum computation ou AQC) est une méthode de calcul quantique reposant sur le théorème adiabatique, qui peut être vu comme une sous-classe des méthodes de recuit simulé quantique. On détermine d'abord un hamiltonien complexe dont l'état fondamental décrit une solution du problème étudié. On prépare ensuite un système possédant un hamiltonien plus simple, que l'on initialise dans son état fondamental.
Uniform isomorphismIn the mathematical field of topology a uniform isomorphism or is a special isomorphism between uniform spaces that respects uniform properties. Uniform spaces with uniform maps form a . An isomorphism between uniform spaces is called a uniform isomorphism. A function between two uniform spaces and is called a uniform isomorphism if it satisfies the following properties is a bijection is uniformly continuous the inverse function is uniformly continuous In other words, a uniform isomorphism is a uniformly continuous bijection between uniform spaces whose inverse is also uniformly continuous.
Trapped ion quantum computerA trapped ion quantum computer is one proposed approach to a large-scale quantum computer. Ions, or charged atomic particles, can be confined and suspended in free space using electromagnetic fields. Qubits are stored in stable electronic states of each ion, and quantum information can be transferred through the collective quantized motion of the ions in a shared trap (interacting through the Coulomb force).
Statistical randomnessA numeric sequence is said to be statistically random when it contains no recognizable patterns or regularities; sequences such as the results of an ideal dice roll or the digits of π exhibit statistical randomness. Statistical randomness does not necessarily imply "true" randomness, i.e., objective unpredictability. Pseudorandomness is sufficient for many uses, such as statistics, hence the name statistical randomness. Global randomness and local randomness are different.
Charge qubitIn quantum computing, a charge qubit (also known as Cooper-pair box) is a qubit whose basis states are charge states (i.e. states which represent the presence or absence of excess Cooper pairs in the island). In superconducting quantum computing, a charge qubit is formed by a tiny superconducting island coupled by a Josephson junction (or practically, superconducting tunnel junction) to a superconducting reservoir (see figure). The state of the qubit is determined by the number of Cooper pairs that have tunneled across the junction.
Linear optical quantum computingLinear optical quantum computing or linear optics quantum computation (LOQC) is a paradigm of quantum computation, allowing (under certain conditions, described below) universal quantum computation. LOQC uses photons as information carriers, mainly uses linear optical elements, or optical instruments (including reciprocal mirrors and waveplates) to process quantum information, and uses photon detectors and quantum memories to detect and store quantum information.
Algorithmically random sequenceIntuitively, an algorithmically random sequence (or random sequence) is a sequence of binary digits that appears random to any algorithm running on a (prefix-free or not) universal Turing machine. The notion can be applied analogously to sequences on any finite alphabet (e.g. decimal digits). Random sequences are key objects of study in algorithmic information theory. As different types of algorithms are sometimes considered, ranging from algorithms with specific bounds on their running time to algorithms which may ask questions of an oracle machine, there are different notions of randomness.
Générateur de nombres aléatoires matérielEn informatique, un générateur de nombres aléatoires matériel (aussi appelé générateur de nombres aléatoires physique ; en anglais, hardware random number generator ou true random number generator) est un appareil qui génère des nombres aléatoires à partir d'un phénomène physique, plutôt qu'au moyen d'un programme informatique. De tels appareils sont souvent basés sur des phénomènes microscopiques qui génèrent de faibles signaux de bruit statistiquement aléatoires, tels que le bruit thermique ou l'effet photoélectrique.