Apprentissage avec erreursL'apprentissage avec erreurs, souvent abrégé LWE (acronyme de l'anglais Learning With Errors), est un problème calculatoire supposé difficile. Il est au cœur de nombreux cryptosystèmes récents et constitue l'une des principales pistes de recherche pour le développement de la cryptographie post-quantique. L'introduction de ce problème par Oded Regev dans la communauté informatique, et ses travaux sur ce sujet, lui ont valu de recevoir le prix Gödel en 2018.
Ring learning with errorsIn post-quantum cryptography, ring learning with errors (RLWE) is a computational problem which serves as the foundation of new cryptographic algorithms, such as NewHope, designed to protect against cryptanalysis by quantum computers and also to provide the basis for homomorphic encryption. Public-key cryptography relies on construction of mathematical problems that are believed to be hard to solve if no further information is available, but are easy to solve if some information used in the problem construction is known.
Ideal latticeIn discrete mathematics, ideal lattices are a special class of lattices and a generalization of cyclic lattices. Ideal lattices naturally occur in many parts of number theory, but also in other areas. In particular, they have a significant place in cryptography. Micciancio defined a generalization of cyclic lattices as ideal lattices. They can be used in cryptosystems to decrease by a square root the number of parameters necessary to describe a lattice, making them more efficient.
Lattice-based cryptographyLattice-based cryptography is the generic term for constructions of cryptographic primitives that involve lattices, either in the construction itself or in the security proof. Lattice-based constructions are currently important candidates for post-quantum cryptography. Unlike more widely used and known public-key schemes such as the RSA, Diffie-Hellman or elliptic-curve cryptosystems — which could, theoretically, be defeated using Shor's algorithm on a quantum computer — some lattice-based constructions appear to be resistant to attack by both classical and quantum computers.
Cryptographie post-quantiqueLa cryptographie post-quantique est une branche de la cryptographie visant à garantir la sécurité de l'information face à un attaquant disposant d'un calculateur quantique. Cette discipline est distincte de la cryptographie quantique, qui vise à construire des algorithmes cryptographiques utilisant des propriétés physiques, plutôt que mathématiques, pour garantir la sécurité. En l'effet, les algorithmes quantiques de Shor, de Grover et de Simon étendent les capacités par rapport à un attaquant ne disposant que d'un ordinateur classique.
Ring learning with errors key exchangeIn cryptography, a public key exchange algorithm is a cryptographic algorithm which allows two parties to create and share a secret key, which they can use to encrypt messages between themselves. The ring learning with errors key exchange (RLWE-KEX) is one of a new class of public key exchange algorithms that are designed to be secure against an adversary that possesses a quantum computer. This is important because some public key algorithms in use today will be easily broken by a quantum computer if such computers are implemented.
Théorie des automatesEn informatique théorique, l'objectif de la théorie des automates est de proposer des modèles de mécanismes mathématiques qui formalisent les méthodes de calcul.
Hypothèse calculatoireEn cryptographie, une hypothèse de difficulté calculatoire est une hypothèse qui sert à évaluer et à démontrer la robustesse des primitives cryptographiques. Dans certains cas, la sécurité est dite inconditionnelle si elle ne repose sur aucune hypothèse de difficulté calculatoire ; un exemple courant est la technique dite du masque jetable, où le masque est aussi grand que le message. Cependant, il est souvent impossible d'atteindre une forme de sécurité aussi forte ; dans de tels cas, les cryptographes doivent s'en remettre à une forme de sécurité dite « calculatoire ».
Weighted automatonIn theoretical computer science and formal language theory, a weighted automaton or weighted finite-state machine is a generalization of a finite-state machine in which the edges have weights, for example real numbers or integers. Finite-state machines are only capable of answering decision problems; they take as input a string and produce a Boolean output, i.e. either "accept" or "reject". In contrast, weighted automata produce a quantitative output, for example a count of how many answers are possible on a given input string, or a probability of how likely the input string is according to a probability distribution.
BootstrappingIn general, bootstrapping usually refers to a self-starting process that is supposed to continue or grow without external input. Tall boots may have a tab, loop or handle at the top known as a bootstrap, allowing one to use fingers or a boot hook tool to help pull the boots on. The saying "to " was already in use during the 19th century as an example of an impossible task. The idiom dates at least to 1834, when it appeared in the Workingman's Advocate: "It is conjectured that Mr.