Farkas, MátéMátéFarkasMiklin, NikolaiNikolaiMiklinTavakoli, ArminArminTavakoli2025-04-012025-04-012025-02-25Quantum 9: 1643 (2025)https://hdl.handle.net/11420/55007Random access codes are a type of communication task that is widely used in quantum information science. The optimal average success probability that can be achieved through classical strategies is known for any random access code. However, only a few cases are solved exactly for quantum random access codes. In this paper, we provide bounds for the fully general setting of n independent variables, each selected from a d-dimensional classical alphabet and encoded in a D-dimensional quantum system subject to an arbitrary quantum measurement. The bound recovers the exactly known special cases, and we demonstrate numerically that even though the bound is not tight overall, it can still yield a good approximation.en2521-327XQuantum2025Verein zur Förderung des Open Access Publizierens in den Quantenwissenschaftenhttps://creativecommons.org/licenses/by/4.0/Natural Sciences and Mathematics::530: PhysicsComputer Science, Information and General Works::004: Computer SciencesSimple and general bounds on quantum random access codesJournal Articlehttps://doi.org/10.15480/882.1496810.22331/q-2025-02-25-164310.15480/882.14968Journal Article