A manufacturable platform for photonic quantum computing
Praevium Research (United States) · Sci-Tech Daresbury
Abstract
Abstract Although holding great promise for low noise, ease of operation and networking 1 , useful photonic quantum computing has been precluded by the need for beyond-state-of-the-art components, manufactured by the millions 2–6 . Here we introduce a manufacturable platform 7 for quantum computing with photons. We benchmark a set of monolithically integrated silicon-photonics-based modules to generate, manipulate, network and detect heralded photonic qubits, demonstrating dual-rail photonic qubits with 99.98% ± 0.01% state preparation and measurement fidelity, Hong–Ou–Mandel (HOM) quantum interference between independent photon sources with 99.50% ± 0.25% visibility, two-qubit fusion with 99.22% ± 0.12%…
Citation impact
- FWCI
- 295.39
- Percentile
- 100%
- References
- 40
Authors
102- PTPsiQuantum teamCorresponding
Praevium Research (United States)
- KAKoen Alexander
Praevium Research (United States)
- ABAvishai Benyamini
Praevium Research (United States)
- DSDylan S. Black
Praevium Research (United States)
- DBDamien Bonneau
Praevium Research (United States)
Topics & keywords
- Photonics
- Quantum computer
- Quantum
- Computer science
- Optoelectronics
- Physics
- Quantum mechanics