30 September 2025 to 3 October 2025
Bari (Italy) - Palazzo dell'Acqua
Europe/Rome timezone

Optimal and robust error filtration for quantum information processing

3 Oct 2025, 12:30
30m
Conference Room (Bari (Italy) - Palazzo dell'Acqua)

Conference Room

Bari (Italy) - Palazzo dell'Acqua

Palazzo dell'Acqua, Via Salvatore Cognetti, 36 70121 Bari (BA), Italy Room: Sala Conferenze

Speaker

Aaqib Ali

Description

Error filtration is a hardware scheme that mitigates noise by exploiting auxiliary qubits and entangling gates. Although both signal and ancillas are subject to local noise, constructive interference and post-selection allow us to reduce the noise level in the signal qubit. Here we highlight the relation between error filtration and error detection codes, and determine the optimal codes that make the qubits interfere most effectively.We examine our optimized scheme under imperfect implementation, where ancillary qubits may be noisy or subject to cross-talk. Even with these imperfections, we find that adding more ancillary qubits helps in protecting quantum information.We benchmark our approach against figures of merit that correspond to different applications, including entanglement fidelity, quantum Fisher information (for applications in quantum sensing), and CHSH value (for cryptographic applications), with one, two, and three ancillary qubits.By using the entanglement fidelity as a figure of merit, we suggest a general condition for error filtration and, for one and two ancillas, we obtain some explicit expressions for the optimal codes. We also compare our method with the recently introduced Superposed Quantum Error Mitigation (SQEM) scheme based on superposition of causal orders, and show that, for a wide range of noise strengths, our approach may outperform SQEM in terms of effectiveness and robustness.

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