This paper presents a method for constructing fault-tolerant quantum circuits that can handle quantum inputs and outputs, a crucial step towards practical quantum communication and computation in the presence of noise.
This article proposes a novel architecture for fault-tolerant quantum computing that integrates window-based correlated decoding with constant-time logical gates, enabling efficient and scalable quantum computation for large-scale circuits, particularly on platforms like ion traps.
This research paper presents a novel approach to achieve fault-tolerant universal quantum computing without relying on mid-circuit measurements by combining code switching and code concatenation techniques.