most citedEnergy, Bosons and Computational Complexity

1 citations · 1 across the 8 of their papers we have counts for

collaborators

32 papers

quant-ph2026

Rigorous characterization of continuous-variable quantum states via optical parametric amplifiers

Manthan Badbaria, Fumiya Hanamura, Maxime Garnier +2

Characterizing non-Gaussian quantum states is of paramount importance for continuous-variable quantum information processing, yet conventional homodyne-measurement-based state tomo…

quant-ph2026

Improved GKP magic states from error-corrected non-Gaussian quantum states

Sharon David, Jack Davis, Ulysse Chabaud +1

Gate teleportation, together with magic state distillation, is a promising route towards fault-tolerant, universal computation. In the context of bosonic quantum computation, Barag…

quant-ph2026

Bosonic quantum error-correcting codes with finite stellar rank

Rui Wang, Adithi Udupa, Timo Hillmann +3

Bosonic quantum error correction (QEC) relies on non-Gaussian bosonic encodings whose preparation cost is a central practical constraint. In this work, we use stellar rank as a res…

quant-ph2026

Detecting quantum non-Gaussianity with a single quadrature

Clara Wassner, Jack Davis, Sacha Cerf +2

Full reconstruction of quantum states from measurement samples is often a prohibitively complex task, both in terms of the experimental setup and the scaling of the sample size wit…

quant-ph20261 cited

Energy, Bosons and Computational Complexity

Dorian Rudolph, Arsalan Motamedi, Dhruva Sambrani +4

We investigate the role of energy, i.e. average photon number, as a resource in the computational complexity of bosonic systems. We show three sets of results: (1. Energy growth ra…

quant-ph2026

Local controllability of heralded quantum linear optics

Tommaso Francalanci, Nicolò Spagnolo, Mario Sigalotti +3

Photonic linear optical networks provide a versatile platform for quantum information processing and quantum state engineering. However, the set of states that can be generated usi…