Author Affiliations
Abstract
Key Laboratory of Optical Fiber Sensing and Communications, Ministry of Education, University of Electronic Science and Technology of China, Chengdu 611731, China
All-fiber few-mode erbium-doped fiber amplifiers (FM-EDFAs) with isolation and wavelength division multiplexers (IWDMs) have been developed to enable flexible pumping in different directions. The FM-EDFA can achieve >30 dB modal gain with <0.3 dB differential modal gain (DMG). We experimentally simulate the DMG performance of a cascade FM-EDFA system using the equivalent spectrum method. The overall DMG reaches 1.84 dB after 10-stage amplification. We also build a recirculating loop to simulate the system, and the developed FM-EDFA can support transmission up to 3270 km within a 2 dB overall DMG by optimizing the few-mode fiber length in the loop.
mode division multiplexing few-mode erbium-doped fiber amplifier gain equalization 
Chinese Optics Letters
2024, 22(4): 041401
Author Affiliations
Abstract
School of Information and Communication Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China
We propose and numerically demonstrate a photonic computing primitive designed for integrated spiking neural networks (SNNs) based on add-drop ring microresonators (ADRMRs) and electrically reconfigurable phase-change material (PCM) photonic switches. In this neuromorphic system, the passive silicon-based ADRMR, equipped with a power-tunable auxiliary light, effectively demonstrates nonlinearity-induced dual neural dynamics encompassing spiking response and synaptic plasticity that can generate single-wavelength optical neural spikes with synaptic weight. By cascading these ADRMRs with different resonant wavelengths, weighted multiple-wavelength spikes can be feasibly output from the ADRMR-based hardware arrays when external wavelength-addressable optical pulses are injected; subsequently, the cumulative power of these weighted output spikes is utilized to ascertain the activation status of the reconfigurable PCM photonic switches. Moreover, the reconfigurable mechanism driving the interconversion of the PCMs between the resonant-bonded crystalline states and the covalent-bonded amorphous states is achieved through precise thermal modulation. Drawing from the thermal properties, an innovative thermodynamic leaky integrate-and-firing (TLIF) neuron system is proposed. With the TLIF neuron system as the fundamental unit, a fully connected SNN is constructed to complete a classic deep learning task: the recognition of handwritten digit patterns. The simulation results reveal that the exemplary SNN can effectively recognize 10 numbers directly in the optical domain by employing the surrogate gradient algorithm. The theoretical verification of our architecture paves a whole new path for integrated photonic SNNs, with the potential to advance the field of neuromorphic photonic systems and enable more efficient spiking information processing.
Photonics Research
2024, 12(4): 755
作者单位
摘要
电子科技大学 光纤传感与通信教育部重点实验室,成都 611731
以马赫-曾德尔干涉仪光开关单元组成的4×4 Benes光交换芯片为例,研究了光交换芯片中的相干问题。理论推导了光交换芯片输出端口与输入端口之间光场的变换关系,揭示了信号和串扰的产生规律,分析了光开关状态对串扰相干强度的影响。仿真研究表明:相干串扰对信号插损的影响可以忽略;在不同光开关组合状态下,光交换芯片的串扰波动可达7 dB。根据相干光束之间的相位关系,提出一种等效去除光交换芯片中串扰相干性的方法。另外,对串扰大小对通信误码率的影响进行了实验评估。
光交换芯片 相干效应 Benes结构 马赫-曾德尔干涉仪 串扰 Optical switching chip Coherence effect Benes structure Mach-Zehnder interferometer Crosstalk 
光子学报
2023, 52(10): 1052418
Yiqun Zhang 1,2†Mingfeng Xu 2,3†Mingbo Pu 2,3,4Mengjie Zhou 5[ ... ]Xiangang Luo 2,4,*
Author Affiliations
Abstract
1 School of Information and Communication Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China
2 State Key Laboratory of Optical Technologies on Nano-Fabrication and Micro-Engineering, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China
3 Research Center on Vector Optical Fields, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China
4 School of Optoelectronics, University of Chinese Academy of Sciences, Beijing 100049, China
5 Tianfu Xinglong Lake Laboratory, Chengdu 610299, China
6 e-mail: uestc_nj@uestc.edu.cn
Optical chaotic signals emitted from an external-cavity feedback or injected laser diode enable small-signal information concealment in a noise-like carrier for secure optical communications. Due to the chaotic bandwidth limitation resulting from intrinsic relaxation oscillation frequency of lasers, multiplexing of optical chaotic signal, such as wavelength division multiplexing in fiber, is a typical candidate for high-capacity secure applications. However, to our best knowledge, the utilization of the spatial dimension of optical chaos for free-space secure communication has not yet been reported. Here, we experimentally demonstrate a free-space all-optical chaotic communication system that simultaneously enhances transmission capacity and security by orbital angular momentum (OAM) multiplexing. Optical chaotic signals with two different OAM modes totally carrying 20 Gbps on–off keying signals are secretly transmitted over a 2 m free-space link, where the channel crosstalk of OAM modes is less than -20 dB, with the mode spacing no less than 3. The receiver can extract valid information only when capturing approximately 92.5% of the OAM beam and correctly demodulating the corresponding mode. Bit error rate below the 7% hard-decision forward error correction threshold of 3.8×10-3 can be achieved for the intended recipient. Moreover, a simulated weak turbulence is introduced to comprehensively analyze the influence on the system performance, including channel crosstalk, chaotic synchronization, and transmission performance. Our work may inspire structured light application in optical chaos and pave a new way for developing future high-capacity free-space chaotic secure communication systems.
Photonics Research
2023, 11(12): 2185
Author Affiliations
Abstract
Key Laboratory of Optical Fiber Sensing and Communication Networks, School of Information and Communication Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China
The nonlinear physics dynamics of temporal dissipative solitons in a microcavity hinder them from attaining high power from pump lasers with a typical nonlinear energy conversion efficiency of less than 1%. Here, we experimentally demonstrate a straightforward method for improving the output power of soliton combs using a silica microrod cavity with high coupling strength, large mode volume, and high-Q factor, resulting in a low-repetition-rate dissipative soliton (21 GHz) with an energy conversion efficiency exceeding 20%. Furthermore, by generating an 105 GHz5×FSR (free spectral range) soliton crystal comb in the microcavity, the energy conversion efficiency can be further increased up to 56%.
optical microcavity nonlinear optics temporal soliton 
Chinese Optics Letters
2023, 21(10): 101902
作者单位
摘要
电子科技大学信息与通信工程学院光纤传感与通信教育部重点实验室,四川 成都 611731
许多幅度再生方案可用马赫‐曾德尔干涉仪(MZI)结构进行建模。研究级联光学相位共轭器(OPC)的MZI(OPC‐MZI)再生方案,以实现近乎理想的相位保持再生。通过分析整个级联系统的功率和相位转移特性,优化设计了满足需求的硅基MZI再生芯片单元。采用正交相移键控(QPSK)调制信号仿真验证了OPC‐MZI再生方案的可行性。仿真结果表明:当输入信噪比为16 dB时,与单级MZI再生芯片相比,OPC‐MZI再生方案的噪声抑制比(NRR)可提高1 dB,相位扰动也由5.7°降至0.07°。
光通信 全光再生 光学相位共轭器 马赫‐曾德尔干涉仪 多级调制信号 
中国激光
2023, 50(19): 1906005
作者单位
摘要
电子科技大学光纤传感与通信教育部重点实验室,四川 成都 611731
模分复用(MDM)与高速光传送网(OTN)相结合,能缓解日益增长的带宽需求压力和降低已有相干通信设备的使用成本。搭建了100 Gbit/s双偏振正交相移键控(DP-QPSK)MDM信号放大传输系统,主要包括MDM信号收发单元和少模掺铒光纤放大器(FM-EDFA),其中FM-EDFA采用少模隔离型波分复用器(FM-IWDM)构建。三模(LP01、LP11a和LP11b)放大传输实验表明,相对于无FM-EDFA的MDM系统,各信道的接收机灵敏度(以10-2误码率为参考)分别劣化0.55 dB、1.47 dB和0.99 dB。研究了两模(LP01和LP11b)放大情形下模式增益差(DMG)对信道灵敏度均衡性的影响,结果显示两者无明显的依赖关系。所得结论可为双偏振(DP)信号的MDM放大传输研究提供参考。
光通信 模分复用 少模掺铒光纤放大器 双偏振信号 
光学学报
2023, 43(9): 0906004
作者单位
摘要
电子科技大学信息与通信工程学院光纤传感与通信教育部重点实验室,四川 成都 611731
针对现有相位保持幅度再生方案仍然存在残余相位扰动的问题,提出光学相位共轭器辅助的非线性光纤环形镜(OPC-NOLM)方案,该方案可实现多电平全光幅度再生功能,具有相位扰动几乎为零的完美相位保持能力。以16阶正交幅度调制(16QAM)信号为例,仿真了OPC-NOLM再生方案性能。研究表明,在输入信噪比为15 dB时,与不使用OPC的单一非线性光纤环形镜(NOLM)情形相比,所提方案的噪声抑制比提高了3.8 dB。
光纤光学 全光再生 非线性光环镜 相位保持 幅度再生 多级调制格式 
光学学报
2023, 43(3): 0306001
作者单位
摘要
1 电子科技大学信息与通信工程学院,四川 成都 611731
2 中国空间技术研究院卫星应用总体部,北京 100081
提出并验证了一种基于深度学习的混沌激光同步优化方案,在共同外腔半导体激光器驱动注入同步系统中,引入生成对抗网络对初始的混沌同步信号进行优化。所提方案的主要优点在于:实现了混沌信号的时延标签抑制和复杂度提升;显著改善了混沌信号幅值分布的对称性;大幅降低了驱动端和本地端的相关性,提升了同步系统的私密性。此外,将优化后的混沌信号应用于物理熵源,在高质量混沌同步的基础上,验证了速率高达4.1 Gbit/s、误码率低于10-3的高速同步物理随机数产生。
激光光学 混沌激光 光反馈 混沌同步 生成对抗网络 物理随机数 
光学学报
2023, 43(1): 0114002
作者单位
摘要
电子科技大学光纤传感与通信教育部重点实验室,四川 成都 611731
利用少模掺铒光纤放大器(FM-EDFA)的差模增益可调性,可实现模式增益均衡、补偿链路模式相关损耗,能够大大提高模分复用系统的组网灵活性。制作少模隔离器和波分复用器一体化光纤器件(FM-IWDM),并将其用于构建全光纤型FM-EDFA。采用中心波长为1480 nm的泵浦光源开展同向和双向泵浦光放大实验,保持泵浦总功率为200 mW,通过调节泵浦功率比例,分别获得2.6 dB和4.8 dB的最大可调差模增益。
光通信 模分复用 掺铒光纤放大器 差模增益 
光学学报
2022, 42(15): 1506004

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