Non-Gaussian quantum states are crucial to fault-tolerant quantum computation with continuous-variable systems. Usually, generation of such states involves trade-offs between …
We present numerical results from simulations using deep reinforcement learning to control a measurement-based quantum processor—a time-multiplexed optical circuit sampled by …
The paper investigated a set of non-Gaussian states generated by measuring the number of particles in one of the modes of a two-mode entangled Gaussian state. It was demonstrated …
Perfect inline squeezers are both spectrally pure and have identical input and output temporal modes, allowing one to squeeze an arbitrary input quantum state in the sole input …
In the present paper, we investigate the protocol for the generation of squeezed Fock states by measuring the number of particles from a two-mode entangled Gaussian state using a …
Gottesman-Kitaev-Preskill (GKP) encoding holds promise for continuous-variable fault- tolerant quantum computing. While an ideal GKP encoding is abstract and impractical due to …
H Luo, S Mahmoodian - arXiv preprint arXiv:2412.14798, 2024 - arxiv.org
Optical Schr\"{o} dinger cat states are non-Gaussian states with applications in quantum technologies, such as for building error-correcting states in quantum computing. Yet the …
Photonics represents one of the most promising approaches to large-scale quantum computation with millions of qubits and billions of gates, owing to the potential for room …
A Anteneh, O Pfister - 2024 Conference on Lasers and Electro …, 2024 - ieeexplore.ieee.org
We present numerical simulations of deep reinforcement learning on a measurement-based quantum processor-a time-multiplexed optical circuit sampled by photon-number-resolving …