We propose a frequency-tunable router of single photons with high routing efficiency, which is constructed by two waveguides mediately linked by a single-mode whispering gallery resonator with a driven three-level emi...We propose a frequency-tunable router of single photons with high routing efficiency, which is constructed by two waveguides mediately linked by a single-mode whispering gallery resonator with a driven three-level emitter. Quantum routing probability in the output port is obtained via the real-space Hamiltonian. By adjusting the resonator–emitter coupling and the drive, the desired continuous central frequencies for the resonance peaks of routing photons can be manipulated nearly linearly, with the assistance of Rabi splitting effect and optical Stark shift. The proposed routing system may provide potential applications in designing other frequency-modulation quantum optical devices, such as multiplexers,filters, and so on.展开更多
We theoretically investigate coherent scattering of single photons and quantum entanglement of two giant atoms with azimuthal angle differences in a waveguide system.Using the real-space Hamiltonian,analytical express...We theoretically investigate coherent scattering of single photons and quantum entanglement of two giant atoms with azimuthal angle differences in a waveguide system.Using the real-space Hamiltonian,analytical expressions are derived for the transport spectra scattered by these two giant atoms with four azimuthal angles.Fano-like resonance can be exhibited in the scattering spectra by adjusting the azimuthal angle difference.High concurrence of the entangled state for two atoms can be implemented in a wide angle-difference range,and the entanglement of the atomic states can be switched on/off by modulating the additional azimuthal angle differences from the giant atoms.This suggests a novel handle to effectively control the single-photon scattering and quantum entanglement.展开更多
图像着色的目标是为灰度图像的每一个像素分配颜色,它是图像处理领域的热点问题。以U-Net为主线网络,结合深度学习和卷积神经网络设计了一个全自动的着色网络模型。在该模型中,支线使用卷积神经网络SEInception-ResNet-v2作为高水平的...图像着色的目标是为灰度图像的每一个像素分配颜色,它是图像处理领域的热点问题。以U-Net为主线网络,结合深度学习和卷积神经网络设计了一个全自动的着色网络模型。在该模型中,支线使用卷积神经网络SEInception-ResNet-v2作为高水平的特征提取器,提取图像的全局信息,同时在网络中使用PoLU(Power Linear Unit)函数替代线性整流函数(ReLU)。实验结果证明此着色网络模型能够对灰度图像进行有效的着色。展开更多
基金Project supported by the National Natural Science Foundation of China (Grant Nos. 12365003, 12364024, and 11864014)the Natural Science Foundation of Jiangxi Province, China (Grant Nos. 20212BAB201014 and 20224BAB201023)。
文摘We propose a frequency-tunable router of single photons with high routing efficiency, which is constructed by two waveguides mediately linked by a single-mode whispering gallery resonator with a driven three-level emitter. Quantum routing probability in the output port is obtained via the real-space Hamiltonian. By adjusting the resonator–emitter coupling and the drive, the desired continuous central frequencies for the resonance peaks of routing photons can be manipulated nearly linearly, with the assistance of Rabi splitting effect and optical Stark shift. The proposed routing system may provide potential applications in designing other frequency-modulation quantum optical devices, such as multiplexers,filters, and so on.
基金Project supported by the National Natural Science Foundation of China(Grant Nos.12365003,12364024,and 11864014)the Jiangxi Provincial Natural Science Foundation(Grant Nos.20212BAB201014 and 20224BAB201023)。
文摘We theoretically investigate coherent scattering of single photons and quantum entanglement of two giant atoms with azimuthal angle differences in a waveguide system.Using the real-space Hamiltonian,analytical expressions are derived for the transport spectra scattered by these two giant atoms with four azimuthal angles.Fano-like resonance can be exhibited in the scattering spectra by adjusting the azimuthal angle difference.High concurrence of the entangled state for two atoms can be implemented in a wide angle-difference range,and the entanglement of the atomic states can be switched on/off by modulating the additional azimuthal angle differences from the giant atoms.This suggests a novel handle to effectively control the single-photon scattering and quantum entanglement.
文摘图像着色的目标是为灰度图像的每一个像素分配颜色,它是图像处理领域的热点问题。以U-Net为主线网络,结合深度学习和卷积神经网络设计了一个全自动的着色网络模型。在该模型中,支线使用卷积神经网络SEInception-ResNet-v2作为高水平的特征提取器,提取图像的全局信息,同时在网络中使用PoLU(Power Linear Unit)函数替代线性整流函数(ReLU)。实验结果证明此着色网络模型能够对灰度图像进行有效的着色。
基金Supported by National Natural Science Foundation of China,11447118,11247032,11365011Youth Science Foundation of Science and Technology Department of Jiangxi Province,20151BAB212004,20151BAB212012~~