Parallel Architecture of a Frequency Comb Qudit Quantum Processor
Parallel Architecture of a Frequency Comb Qudit Quantum Processor
Quantum optical frequency combs provide an intriguing approach to high-dimensional quantum states. Because of the need to move probabilities among different colors, the realization of gates appropriate to multicolor photons requires nonlinear or electro-optic mixing. This paper describes a novel architecture for such gates. The parallel arrangement of mixers by dimension allows graceful scaling beyond two-dimensional qubits. The parallelism of the implementation simplifies the programming of the gate for a particular operation. As an example, we demonstrate the design of a four-dimensional Chrestenson operator.
Duncan L. MacFarlane、Hiva Shahoei、Murphy V. Paul、R. Mason Tuller、Mitchell A. Thornton
光电子技术
Duncan L. MacFarlane,Hiva Shahoei,Murphy V. Paul,R. Mason Tuller,Mitchell A. Thornton.Parallel Architecture of a Frequency Comb Qudit Quantum Processor[EB/OL].(2025-08-21)[2025-09-06].https://arxiv.org/abs/2508.15981.点此复制
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