most citedAdaptive POVM implementations and measurement error mitigation strategies for near-term quantum devices

15 citations · 18 across the 3 of their papers we have counts for

collaborators

5 papers

quant-ph20242 cited

Scalability of quantum error mitigation techniques: from utility to advantage

Sergey N. Filippov, Sabrina Maniscalco, Guillermo García-Pérez

Error mitigation has elevated quantum computing to the scale of hundreds of qubits and tens of layers; however, yet larger scales (deeper circuits) are needed to fully exploit the…

quant-ph202312 cited

Scalable tensor-network error mitigation for near-term quantum computing

Sergei Filippov, Matea Leahy, Matteo A. C. Rossi +1

Until fault-tolerance becomes implementable at scale, quantum computing will heavily rely on noise mitigation techniques. While methods such as zero noise extrapolation with probab…

quant-ph202215 cited

Adaptive POVM implementations and measurement error mitigation strategies for near-term quantum devices

Adam Glos, Anton Nykänen, Elsi-Mari Borrelli +4

We present adaptive measurement techniques tailored for variational quantum algorithms on near-term small and noisy devices. In particular, we generalise earlier "learning to measu…

quant-ph20222 cited

Virtual linear map algorithm for classical boost in near-term quantum computing

Guillermo García-Pérez, Elsi-Mari Borrelli, Matea Leahy +5

The rapid progress in quantum computing witnessed in recent years has sparked widespread interest in developing scalable quantum information theoretic methods to work with large qu…

physics.soc-ph20141 cited

Regulation of burstiness by network-driven activation

Guillermo García-Pérez, Marián Boguñá, M. Ángeles Serrano

We prove that complex networks of interactions have the capacity to regulate and buffer unpredictable fluctuations in production events. We show that non-bursty network-driven acti…