Accelerating Computation in Quantum LDPC Code
Jungmin Cho, Hyeonseong Jeong, Junpyo Kim, Junhyuk Choi, Juwon Hong, Jangwoo Kim
Abstract
Fault-tolerant quantum computing (FTQC) uses quantum error correction (QEC) codes to execute large-scale quantum programs on noisy quantum computers. Quantum low-density parity-check (qLDPC) codes are promising as they use an order of magnitude fewer qubits than widely used surface codes. However, as qLDPC codes support only a limited set of operations, they require programs to be decomposed into many qLDPC-supported operations. This prohibitively increases the execution time of FTQC applications to tens of days, hindering the practical viability of qLDPC codes.
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