光子
量子位元
量子
传输(电信)
物理
最优控制
忠诚
计算机科学
量子信息科学
光子纠缠
量子光学
相干控制
拓扑(电路)
量子力学
数学
量子纠缠
电信
数学优化
工程类
电气工程
标识
DOI:10.1109/cdc49753.2023.10384252
摘要
The transmission of flying qubits carried by itinerant photons is fundamental in quantum communication networks. To physically match the receiver system, the single photons must be prepared in proper shapes, and this leads to a variety of flying-qubit control problems. In this paper, we introduce the optimal control theory to the shaping of single photons, where the control to be optimized are coherent driving fields. We design gradient-based algorithms to minimize the shape difference between the emitted and desired single photons. Simulation results show that the optimization can achieve high-fidelity in the generation of decaying photon shapes with a two-level atom. However, its performance is limited and hence has to be combined with incoherence controls when the target shape has a rising part.
科研通智能强力驱动
Strongly Powered by AbleSci AI