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20242026
most citedDynamical simulations of many-body quantum chaos on a quantum computer

15 citations · 25 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph2026

Characterization of Unlearnable Noise with Mid-Circuit-Measurement-Based Cycle Benchmarking

M. H. Cheng, Stefano Mangini, V. Bartsch +4

Noise characterization of multi-qubit entangling Clifford operations is a key practical bottleneck for quantum error mitigation and for the calibration, validation, and optimizatio…

quant-ph2026

Repetition-code-based readout error detection and correction across hardware platforms and generations

Csaba Czabán, Orsolya Kálmán, Sergey N. Filippov +1

Readout errors are one of the dominant sources of noise in current quantum processors, limiting both expectation-value estimation and sampling-based applications. Since they affect…

quant-ph2026

Experimental implementation of a discrete-time quantum walk on biological networks

Viacheslav Dubovitskii, Filippo Utro, Aritra Bose +3

Quantum walks provide a versatile framework for probing the structural and dynamical properties of complex systems ranging from biological networks to synthetic materials. However,…

quant-ph2025★ 8 cited

Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Zoltán Zimborás, Bálint Koczor, Zoë Holmes +19

In this perspective article, we revisit and critically evaluate prevailing viewpoints on the capabilities and limitations of near-term quantum computing and its potential transitio…

quant-ph2024★ 15 cited

Dynamical simulations of many-body quantum chaos on a quantum computer

Laurin E. Fischer, Matea Leahy, Andrew Eddins +16

Quantum circuits with local unitaries have emerged as a rich playground for the exploration of many-body quantum dynamics of discrete-time systems. While the intrinsic locality mak…

quant-ph2024★ 2 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…