Cédric Bamps, Serge Massar, Stefano Pironio
Abstract
In quantum cryptography, device-independent (DI) protocols can be certified secure without requiring assumptions about the inner workings of the devices used to perform the protocol. In order to display nonlocality, which is an essential feature in DI protocols, the device must consist of at least two separate components sharing entanglement. This raises a fundamental question: how much entanglement is needed to run such DI protocols? We present a two-device protocol for DI random number generation (DIRNG) which produces approximately bits of randomness starting from pairs of arbitrarily weakly entangled qubits. We also consider a variant of the protocol where singlet states are diluted into partially entangled states before performing the first protocol, and show that the number