8
collaborators
2023–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
6 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Classical simulation of circuits with realistic odd-dimensional Gottesman-Kitaev-Preskill states | TQC 2026 | ▸Cameron Calcluth, Oliver Hahn, Juani Bermejo Vega, Giulia Ferrini |
Classically simulating circuits with bosonic codes is challenging due to the prohibitive cost of simulating quantum systems with many, possibly infinite, energy levels. We propose an algorithm to simulate circuits with encoded Gottesman-Kitaev-Preskill (GKP) states, specifically for odd-dimensional encoded qudits. Our approach is tailored to be especially effective in the most challenging but practically relevant regime, where the codeword states exhibit high (but finite) squeezing. Our algorithm leverages the Zak-Gross Wigner function introduced by J. Davis et al. [arXiv:2407.18394], which represents infinitely squeezed encoded stabilizer states positively. The runtime of the algorithm scales with the negativity of the Wigner function, allowing for efficient simulation of certain large-scale circuits — namely, input stabilizer GKP states undergoing generalized GKP-encoded Clifford operations followed by modular measurements — with a high degree of squeezing. For stabilizer GKP states exhibiting 12 dB of squeezing, our algorithm can simulate circuits with up to 1,000 modes with less than double the number of samples required for a single input mode, in stark contrast to existing simulators. Therefore this approach holds significant potential for benchmarking early implementations of quantum computing architectures utilizing bosonic codes. |
||
| Assessing non-Gaussian quantum state preparation with the stellar rank | QIP 2025 | Oliver Hahn, Giulia Ferrini, Ulysse Chabaud |
| Deterministic Gaussian Conversions | QIP 2024 | Oliver Hahn, Patric Holmvall, Giulia Ferrini |
| Sufficient condition for universal quantum computation using bosonic circuits | QIP 2024 | Cameron Calcluth, Nicolas Reichel, Giulia Ferrini |
| The vacuum provides quantum advantage to otherwise simulatable architectures | QIP 2023 | Cameron Calcluth, Giulia Ferrini |
| Gaussian interconversion of non-Gaussian resources | QIP 2023 | Oliver Hahn, Patric Holmvall, Pascal Stadler, Giulia Ferrini |
Collaborators
| Co-author | Joint talks |
|---|---|
| Giulia Ferrini | 6 |
| Oliver Hahn | 4 |
| Cameron Calcluth | 3 |
| Patric Holmvall | 2 |
| Juani Bermejo Vega | 1 |
| Nicolas Reichel | 1 |
| Pascal Stadler | 1 |
| Ulysse Chabaud | 1 |