paper

Transversal non-Clifford gates on qLDPC codes breaking the distance barrier and quantum-inspired geometry with systolic freedom

arXiv:2507.15056

Abstract

Historically, a distance barrier for quantum low-density parity-check (LDPC) codes with qubits persisted for nearly two decades, until the recent discovery of the fibre-bundle code. An open question is whether such a distance barrier can be broken while preserving the ability to perform transversal non-Clifford gates. In this direction, another long-standing distance barrier of for LDPC stabilizer codes -- present since the discovery of the 3D color code -- was only recently overcome by a construction achieving an distance (arXiv:2501.19375). The present work further breaks the distance barrier by taking a homological product of three good qLDPC codes, combined with the Freedman-Hastings code-to-manifold mapping and the triple cup product to implement transversal CCZ gates. The resulting code achieves an distance (a linear -distance of ) and a dimension of , which enables fault-tolerant preparation of independent logical CCZ magic states in a single shot, without distillation (`magic state fountain'). This new quantum code also inspires the discovery of a family of exotic -dimensional manifolds , which exhibit both a power-law -(, )-systolic freedom and triple intersection points of -dimensional submanifolds.

18 pages, 4 figures