paper

Quantum Circuit for General Unitary: Improved T-count via Block Flattening and Dilation

arXiv:2608.17846

Abstract

Synthesizing arbitrary -qubit unitaries using as few non-Clifford gates as possible is a central problem in fault-tolerant quantum compilation. We present a Clifford+ quantum circuit construction that approximately implements any classically specified unitary to within error and achieves a worst-case -count with leading exponential scaling of whenever . This improves upon the best previous scaling. The key innovation lies in treating the target unitary as a single block-encoded object rather than a long product of simpler operations. A technique of block flattening controls the normalization while preserving an efficient implementation of the block encoding; subsequently, quantum singular value transformation maps its common singular value to one, thereby recovering the target unitary.

13 pages