quantum computing

Majorana-XYZ subsystem code

arXiv:2603.26311

summary

The paper introduces the Majorana-XYZ subsystem code, a quantum error‑correcting code that encodes one logical qubit into L² physical qubits with distance L and offers transversal single‑qubit gates, achieving error‑rate thresholds around 1 % under independent X‑Z noise.

Abstract

Building fault-tolerant quantum computers is a current priority for the quantum computing industry and academic counterparts. We present a quantum error correction code encoding a single logical qubit into physical qubits with distance as a subsystem code, and logical qubits with distance as a standard stabiliser code. The logical single-qubit gates in the subsystem code are transversal. Under independent noise we find a threshold of for odd distance and for even distance for the subsystem variant. The code detects every 1- and 2-qubit error, and additionally every error of weight 3 and higher (constrained by the distance) that is not a product of the 3-qubit check operations. These operations act on the gauge qubits leaving the subsystem code space invariant. The code can be implemented by qubits in a triangular configuration with the plaquettes as 3-qubit check operations.

Topics & keywords

#quantum error correction#subsystem codes#fault-tolerant quantum computing#threshold analysis#triangular latticeMajorana-XYZ codetransversal gatesdistance Lgauge qubitsX Z noise thresholdtriangular plaquette checks
Majorana-XYZ subsystem code · wovepaper