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Requirements and Strategy of China Mobile on 100-Gb/s Based Wavelength Division Multiplexing Systems 被引量:1
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作者 李晗 柳晨 +3 位作者 李允博 张德朝 程伟强 王磊 《China Communications》 SCIE CSCD 2013年第4期31-37,共7页
In recent years, the booming band- width demands of dedicated mobile services have driven the rapid development of optical transport networks (OTNs). Through the in- novative use of emerging coherent optical communi... In recent years, the booming band- width demands of dedicated mobile services have driven the rapid development of optical transport networks (OTNs). Through the in- novative use of emerging coherent optical communication technology and the advance- ment of microelectronics technology, the new-generation 100Gb/s transport technology offers a high line rate and unprecedented re- silience to optical transmission impairments. This paper overviews the bandwidth demands of China Mobile driven by the upcoming roll- out of Time Division-Long Term Evolution (TD-LTE) and presents the 100Gb/s trials at China Mobile that were used to verify the performance of a lOOGb/s system. China Mo- bile's considerations, which were based on the trial results, regarding the deployment of lOOGb/s transport systems are introduced, and the requirements of China Mobile for the evo- lution of lOOGb/s transport systems are sum- marized. 展开更多
关键词 100Gb/s Dense wavelength Di-vision multiplexing OTN optical coherentcommunication dispersion compensation no-nlinear effect
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Performance of phase-matching quantum key distribution based on wavelength division multiplexing technology 被引量:1
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作者 马海强 韩雁鑫 +1 位作者 窦天琦 李鹏云 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第2期103-107,共5页
Quantum key distribution(QKD) generates information-theoretical secure keys between two parties based on the physical laws of quantum mechanics. The phase-matching(PM) QKD protocol allows the key rate to break the qua... Quantum key distribution(QKD) generates information-theoretical secure keys between two parties based on the physical laws of quantum mechanics. The phase-matching(PM) QKD protocol allows the key rate to break the quantum channel secret key capacity limit without quantum repeaters, and the security of the protocol is demonstrated by using equivalent entanglement. In this paper, the wavelength division multiplexing(WDM) technique is applied to the PM-QKD protocol considering the effect of crosstalk noise on the secret key rate. The performance of PM-QKD protocol based on WDM with the influence of adjacent classical channels and Raman scattering is analyzed by numerical simulations to maximize the total secret key rate of the QKD, providing a reference for future implementations of QKD based on WDM techniques. 展开更多
关键词 quantum key distribution wavelength division multiplexing secret key rate
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Exploiting the Faster-Than-Nyquist Concept in Wavelength-Division Multiplexing Systems Using Duobinary Shaping 被引量:1
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作者 Ekawit Tipsuwannakul Magnus Karlsson Peter A. Andrekson 《ZTE Communications》 2012年第1期23-29,共7页
This paper begins with Nyquist wavelengthdivision multiplexing (WDM) and then introduces fasterthanNyquist. In fasterthanNyquist a certain amount of intersymbol interference (ISI) is accepted, which violates the f... This paper begins with Nyquist wavelengthdivision multiplexing (WDM) and then introduces fasterthanNyquist. In fasterthanNyquist a certain amount of intersymbol interference (ISI) is accepted, which violates the fundamental principle of Nyquist WDM. This results in muchrelaxed transceiver bandwidth and simpler spectral design. However, in fasterthanNyquist, implementation complexity is shifted from the transmitter side to the receiver side. Therefore, successful application of fasterthanNyquist depends on innovation in the receiver structure. In this paper, we discuss the guidelines for implementing suboptimum, lowcomplexity receivers based on fasterthanNyquist. We suggest that duobinary shaping is a good technique for trading off achievable spectral efficiency, detection performance, and implementation complexity and might be preferable to Nyquist WDM. Experiments are conducted to verify robustness of the proposed technique. 展开更多
关键词 coherent detection digital signal processing optical fiber communications spectralefficiency wavelength division multiplexing
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A new synchronization scheme based on time division multiplexing and wavelength division multiplexing technology for practical quantum key distribution system
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作者 钟平平 张华妮 +4 位作者 王金东 秦晓娟 魏正军 陈帅 刘颂豪 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第5期73-79,共7页
Three clock synchronization schemes for a quantum key distribution system are compared experimentally through the outdoor fibre and the interaction physical model of the the clock signal and the the quantum signal in ... Three clock synchronization schemes for a quantum key distribution system are compared experimentally through the outdoor fibre and the interaction physical model of the the clock signal and the the quantum signal in the quantum key distribution system is analysed to propose a new synchronization scheme based on time division multiplexing and wavelength division multiplexing technology to reduce quantum bits error rates under some transmission rate conditions, The proposed synchronization scheme can not only completely eliminate noise photons from the bright background light of the the clock signal, but also suppress the fibre nonlinear crosstalk. 展开更多
关键词 quantum key distribution clock synchronization wavelength division multiplexing timedivision multiplexing
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Reference-frame-independent quantum key distribution of wavelength division multiplexing with multiple quantum channels
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作者 Zhongqi Sun Yanxin Han +5 位作者 Tianqi Dou Jipeng Wang Zhenhua Li Fen Zhou Yuqing Huang Haiqiang Ma 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第11期202-206,共5页
Reference-frame-independent quantum key distribution(RFI-QKD)can allow a quantum key distribution system to obtain the ideal key rate and transmission distance without reference system calibration,which has attracted ... Reference-frame-independent quantum key distribution(RFI-QKD)can allow a quantum key distribution system to obtain the ideal key rate and transmission distance without reference system calibration,which has attracted much attention.Here,we propose an RFI-QKD protocol based on wavelength division multiplexing(WDM)considering finite-key analysis and crosstalk.The finite-key bound for RFI-QKD with decoy states is derived under the crosstalk of WDM.The resulting secret key rate of RFI-QKD,which is more rigorous,is obtained.Simulation results reveal that the secret key rate of RFI-QKD based on WDM is affected by the multiplexing channel number,as well as crosstalk between adjacent channels. 展开更多
关键词 quantum key distribution wavelength division multiplexing secret key rate
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2 Tbit/s based coherent wavelength division multiplexing passive optical network for 5G transport
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作者 Abed Barzaq Isaac Ashour +1 位作者 Waseem Shbair Fady IEl-Nahal 《Optoelectronics Letters》 EI 2021年第5期308-312,共5页
Future high-speed mobile communication systems require low latency and high capacity networks.Coherent wavelength division multiplexing(WDM)passive optical network(PON)scheme is expected to play a vital role in these ... Future high-speed mobile communication systems require low latency and high capacity networks.Coherent wavelength division multiplexing(WDM)passive optical network(PON)scheme is expected to play a vital role in these systems.In this paper,coherent WDM-PON scheme based on dual-polarization 16-quadrature amplitude modulation(DP-16 QAM)transceiver has been investigated.The aim of this scheme is to build a 2 Tbit/s(125 Gbit/s/λ×16 wavelengths)network that will be used in the construction of the transport architecture of fifth generation(5 G)and beyond 5 G(B5 G)cellular networks either in mobile front haul(MFH)or mobile back haul(MBH).The results indicate that the proposed scheme is very adequate for both 5 G and B5 G cellular networks requirements. 展开更多
关键词 WDM QAM Tbit/s based coherent wavelength division multiplexing passive optical network for 5G transport PON
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Multichannel Adaptive Polarization Mode Dispersion Compensation with One Compensator in Dense Wavelength Division Multiplexing Transmission Systems
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作者 ZHANG Qi CHEN Ming-hua ZHANG Ji-yu XIE Shi-zhong 《Semiconductor Photonics and Technology》 CAS 2007年第1期58-62,75,共6页
A simple two-section polarization mode dispersion(PMD) compensator is proposed for multichannel PMD compensation, which can compensate two or even more channels simultaneously. Because of the statistical characteristi... A simple two-section polarization mode dispersion(PMD) compensator is proposed for multichannel PMD compensation, which can compensate two or even more channels simultaneously. Because of the statistical characteristics and the frequency-dependence of PMD, for current single mode fiber with moderate PMD, the probability that all channels are severely degraded at the same time is extremely small, which makes it possible to compensate a dense wavelength division multiplexing(DWDM) transmission system with moderate PMD using this compensator. It is shown that the outage probability of a 40×43 Gb/s DWDM transmission system using this compensator is decreased significantly from 3.6×10-3 to 3.6×10-5. 展开更多
关键词 polarization mode dispersion dense wavelength division multiplexing transmission systemtmuhichannel adaptive compensation
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Silicon-Based Mode Converter and Demultiplexer for Wavelength Division Multiplexing Transmission by Using Multimode Interference Couplers
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作者 Yong Zhou Junqiang Sun 《Optics and Photonics Journal》 2020年第6期117-124,共8页
<div style="text-align:justify;"> We present a mode converter and demultiplexer structure for wavelength division multiplexing (WDM) transmission by employing multimode interference (MMI) on Silicon-on... <div style="text-align:justify;"> We present a mode converter and demultiplexer structure for wavelength division multiplexing (WDM) transmission by employing multimode interference (MMI) on Silicon-on-Insulator (SOI) platform. The mode converter and demultiplexer have a compact size of less than 2.7 μm × 43.7 μm. Moreover, the crosstalk between neighboring wavelength channel within C band (1530 nm to 1570 nm) can be reduced by utilizing the tapered phase shifter cascaded with MMI. The simulated results indicate that this structure has a low insertion loss of less than 1 dB, a low crosstalk of better than ?15 dB and a relatively high fabrication tolerance of ~10 nm. Such structure may find many potential applications in silicon photonic integrated devices. </div> 展开更多
关键词 Multimode Interference wavelength Division multiplexing Mode Converter SILICON-ON-INSULATOR
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Optical multiplexing techniques and their marriage for on-chip and optical fiber communication:a review 被引量:19
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作者 Svetlana Nikolaevna Khonina Nikolay Lvovich Kazanskiy +1 位作者 Muhammad Ali Butt Sergei Vladimirovich Karpeev 《Opto-Electronic Advances》 SCIE EI 2022年第8期50-74,共25页
Herein,an attention-grabbing and up-to-date review related to major multiplexing techniques is presented which in-cludes wavelength division multiplexing(WDM),polarization division multiplexing(PDM),space division mul... Herein,an attention-grabbing and up-to-date review related to major multiplexing techniques is presented which in-cludes wavelength division multiplexing(WDM),polarization division multiplexing(PDM),space division multiplexing(SDM),mode division multiplexing(MDM)and orbital angular momentum multiplexing(OAMM).Multiplexing is a mech-anism by which multiple signals are combined into a shared channel used to showcase the maximum capacity of the op-tical links.However,it is critical to develop hybrid multiplexing methods to allow enhanced channel numbers.In this re-view,we have also included hybrid multiplexing techniques such as WDM-PDM,WDM-MDM and PDM-MDM.It is prob-able to attain N×M channels by utilizing N wavelengths and M guided-modes by simply utilizing hybrid WDM-MDM(de)multiplexers.To the best of our knowledge,this review paper is one of its kind which has highlighted the most prom-inent and recent signs of progress in multiplexing techniques in one place. 展开更多
关键词 wavelength division multiplexing mode division multiplexing polarization division multiplexing space-division multiplexing and hybrid multiplexing
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A 32-channel 100 GHz wavelength division multiplexer by interleaving two silicon arrayed waveguide gratings 被引量:3
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作者 Changjian Xie Xihua Zou +3 位作者 Fang Zou Lianshan Yan Wei Pan Yong Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第12期339-342,共4页
A 32-channel wavelength division multiplexer with 100 GHz spacing is designed and fabricated by interleaving two silicon arrayed waveguide gratings(AWGs).It has a parallel structure consisting of two silicon 16-channe... A 32-channel wavelength division multiplexer with 100 GHz spacing is designed and fabricated by interleaving two silicon arrayed waveguide gratings(AWGs).It has a parallel structure consisting of two silicon 16-channel AWGs with200 GHz spacing and a Mach-Zehnder interferometer(MZI)with 200 GHz free spectral range.The 16 channels of one silicon AWG are interleaved with those of the other AWG in spectrum,but with an identical spacing of 200 GHz.For the composed wavelength division multiplexer,the experiment results reveal 32 wavelength channels in C-band,a wavelength spacing of 100 GHz,and a channel crosstalk lower than-15 dB. 展开更多
关键词 wavelength division multiplexer arrayed waveguide grating silicon photonics Mach-Zehnder interferometer
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Realization of advanced passive silicon photonic devices with subwavelength grating structures developed by efficient inverse design 被引量:3
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作者 Jingshu Guo Laiwen Yu +3 位作者 Hengtai Xiang Yuqi Zhao Chaoyue Liu Daoxin Dai 《Advanced Photonics Nexus》 2023年第2期81-93,共13页
Compact passive silicon photonic devices with high performance are always desired for future largescale photonic integration.Inverse design provides a promising approach to realize new-generation photonic devices,whil... Compact passive silicon photonic devices with high performance are always desired for future largescale photonic integration.Inverse design provides a promising approach to realize new-generation photonic devices,while it is still very challenging to realize complex photonic devices for most inverse designs reported previously due to the limits of computational resources.Here,we present the realization of several representative advanced passive silicon photonic devices with complex optimization,including a sixchannel mode(de)multiplexer,a broadband 90 deg hybrid,and a flat-top wavelength demultiplexer.These devices are designed inversely by optimizing a subwavelength grating(SWG)region and the multimode excitation and the multimode interference are manipulated.Particularly,such SWG structures are more fabrication-friendly than those random nanostructures introduced in previous inverse designs.The realized photonic devices have decent performances in a broad bandwidth with a low excess loss of<1 dB,which is much lower than that of previous inverse-designed devices.The present inverse design strategy shows great effectiveness for designing advanced photonic devices with complex requirements(which is beyond the capability of previous inverse designs)by using affordable computational resources. 展开更多
关键词 silicon photonics inverse design subwavelength grating structures mode(de)multiplexers wavelength(de)multiplexers 90 deg hybrids
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Tunable and switchable dual-wavelength erbium-doped fiber laser based on in-line tapered fiber filters
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作者 童峥嵘 杨贺 曹晔 《Optoelectronics Letters》 EI 2016年第4期264-267,共4页
A tunable and switchable dual-wavelength erbium-doped fiber laser(EDFL) based on all-fiber single-mode tapered fiber structure has been demonstrated. By adjusting the variable optical attenuator(VOA), the laser can be... A tunable and switchable dual-wavelength erbium-doped fiber laser(EDFL) based on all-fiber single-mode tapered fiber structure has been demonstrated. By adjusting the variable optical attenuator(VOA), the laser can be switched between the single-wavelength mode and the dual-wavelength mode. When the temperature applied on the tapered fiber structure varies, the pass-band varies and the wavelength of the output laser shifts correspondingly. When the temperature changes from 30 °C to 180 °C, the central wavelength of the EDFL generated by branch A shifts from 1 550.7 nm to 1 560.3 nm, while that of branch B shifts from 1 530.8 nm to 1 540.4 nm, indicating the wavelength interval is tunable. These advantages enable this laser to be a potential candidate for high-capacity wavelength division multiplexing systems and mechanical sensors. 展开更多
关键词 Bandpass filters Electromagnetic wave attenuation ERBIUM Fiber lasers multiplexing equipment Optical waveguides wavelength division multiplexing
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A SYNTHETIC ALGORITHM FOR WAVELENGTH ROUTING IN OPTICAL NETWORK
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作者 Xiao Chunxian Guo Ying Dai Jufeng 《Journal of Electronics(China)》 2007年第1期46-49,共4页
After analyzing the merits and shortcomings of Fixed-Alternated Routing algorithm (FAR) and Least Loaded Routing algorithm (LLR),we propose one novel dynamic optical routing algorithm. Having considered the influences... After analyzing the merits and shortcomings of Fixed-Alternated Routing algorithm (FAR) and Least Loaded Routing algorithm (LLR),we propose one novel dynamic optical routing algorithm. Having considered the influences of path’s length and path’s congestion just like in FAR and LLR,we take into account the network resource status-amount of free wavelengths in the network. Proposed algorithm sets up connections on three possible paths according to amount of available free wave-lengths in the network,which effectively decreases the blocking probability. The National Science Foundation (NSF) network and mesh-torus network simulation results show that the performance of this algorithm is better than that of FAR and LLR. 展开更多
关键词 wavelength Division multiplexing (WDM) Routing and wavelength Assignment (RWA) Shortest path Poisson process
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ROUTING AND WAVELENGTH ASSIGNMENT ALGORITHMS BASED ON EQUIVALENT NETWORKS
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作者 Qi Xiaogang Liu Lifang Liu Sanyang 《Journal of Electronics(China)》 2006年第5期723-730,共8页
In this paper, a Wavelength Division Multiplexing (WDM) network model based on the equivalent networks is described, and wavelength-dependent equivalent arc, equivalent networks, equivalent multicast tree and some oth... In this paper, a Wavelength Division Multiplexing (WDM) network model based on the equivalent networks is described, and wavelength-dependent equivalent arc, equivalent networks, equivalent multicast tree and some other terms are presented. Based on this model and relevant Routing and Wavelength Assign- ment (RWA) strategy, a unicast RWA algorithm and a multicast RWA algorithm are presented. The wave- length-dependent equivalent arc expresses the schedule of local RWA and the equivalent network expresses the whole topology of WDM optical networks, so the two algorithms are of the flexibility in RWA and the optimi- zation of the whole problem. The theoretic analysis and simulation results show the two algorithms are of the stronger capability and the lower complexity than the other existing algorithms for RWA problem, and the complexity of the two algorithms are only related to the scale of the equivalent networks. Finally, we prove the two algorithms’ feasibility and the one-by-one corresponding relation between the equivalent multicast tree and original multicast tree, and point out the superiorities and drawbacks of the two algorithms respectively. 展开更多
关键词 wavelength Division multiplexing (WDM) optical networks wavelength-dependent equivalent arc Equivalent network Equivalent multicast tree Routing and wavelength Assignment (RWA)
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Hybrid WDM/TDM PON system employing an all-optical wavelength converter
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作者 何炜 Liu Deming +1 位作者 Qian Yinbo Liu Hai 《High Technology Letters》 EI CAS 2012年第4期371-375,共5页
A new hybrid WDM/TDM passive optical network (PON) implemented by using all-optical wavelength converters (AOWCs) is proposed. The AOWCs are based on the cross-gain modulation (XGM) effect of the semiconductor o... A new hybrid WDM/TDM passive optical network (PON) implemented by using all-optical wavelength converters (AOWCs) is proposed. The AOWCs are based on the cross-gain modulation (XGM) effect of the semiconductor optical amplifier (SOA). Moreover, the feasibility of this sys- tem is experimentally demonstrated by evaluating the impacts of the optical wavelength conversion, time domain waveforms, eye diagrams and bit-error-rate (BER) in AOWC. The results show that the proposal will be a promising solution for the next generation access networks. 展开更多
关键词 passive optical network (PON) wavelength division multiplexer (WDM) all-optical wavelength converter AOWC) cross-gain modulation (XGM)
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Research on Raman Crosstalk in Broadband Wavelength Division Multiplexed Systems
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作者 薛飞 邱昆 《Journal of Electronic Science and Technology of China》 2004年第1期10-13,共4页
After a theoretical model is put forward on the base of accurate description of the Raman gain profile and the physical quantity, maximum Raman crosstalk(MRC), which quantificationally depicts the intensity of Raman c... After a theoretical model is put forward on the base of accurate description of the Raman gain profile and the physical quantity, maximum Raman crosstalk(MRC), which quantificationally depicts the intensity of Raman crosstalk is defined. The influences of launch power, fiber effective core area, fiber nonlinear index, fiber length, channel number and channel interval on MRC are deduced. The result indicates that compared with low speed and narrowband optical fiber communication system, serious Raman crosstalk lies in high speed and broadband system, which impacts the performance of the system badly. The result is useful for forecasting Raman crosstalk in broadband and high speed optical fiber communication system. 展开更多
关键词 wavelength division multiplexing stimulated Raman scattering effective core area nonlinear index maximum Raman crosstalk(MRC)
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Design and fabrication of LWDM AWG for data centers with rates above 1.6 Tbps
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作者 HUANG Song CUI Peng-Wei +9 位作者 WANG Yue WANG Liang-Liang ZHANG Jia-Shun MA Jun-Chi ZHANG Chun-Xue GUO Li-Yong YANG Han-Ming WU Yuan-Da AN Jun-Ming SONG Ze-Guo 《红外与毫米波学报》 北大核心 2025年第3期406-412,共7页
A 16-channel arrayed waveguide grating(AWG)with an 800 GHz channel spacing in the O-band has been developed and fabricated based on silica planar lightwave circuit(PLC)technology.By extending the wave⁃length allocatio... A 16-channel arrayed waveguide grating(AWG)with an 800 GHz channel spacing in the O-band has been developed and fabricated based on silica planar lightwave circuit(PLC)technology.By extending the wave⁃length allocation from 8 channels to 16 channels as specified in IEEE 802.3bs,we increased the number of chan⁃nels and boosted transmission capacity to meet the 1.6 Tbps and higher-speed signal transmission requirements for future data centers.Through optimizing the AWG structure,it has achieved insertion loss(IL)better than-1.61 dB,loss uniformity below 0.35 dB,polarization-dependent loss(PDL)below 0.35 dB,adjacent channel cross⁃talk under-20.05 dB,ripple less than 0.75 dB,center wavelength offset under 0.22 nm and 1 dB bandwidth ex⁃ceeding 2.88 nm.The AWG has been successfully measured to transmit 53 Gbaud 4-level pulse amplitude modu⁃lation(PAM4)signal per channel and the total transmission speed can reach over 1.6 Tbps. 展开更多
关键词 local area network wavelength division multiplexing(LWDM) arrayed waveguide grating(AWG) O-band SILICA planar lightwave circuit(PLC)
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High-precision multichannel time-domain wavelength division multiplexing FMCW LiDAR ranging and 3D imaging
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作者 Junchen Liu Guohao Chen +4 位作者 Mengxin Liu Wanghang Gu Taoyu Qian Xinghua Qu Fumin Zhang 《Chinese Optics Letters》 2025年第2期56-63,共8页
Accurately perceiving the multidimensional geometric information of complex equipment is crucial for improving product quality and production efficiency.We propose a multichannel time-domain wavelength division multip... Accurately perceiving the multidimensional geometric information of complex equipment is crucial for improving product quality and production efficiency.We propose a multichannel time-domain wavelength division multiplexing frequency modulated continuous wave(FMCW)LiDAR integrated with the optical switch system scheme.This enables the implementation of time-domain wavelength division multiplexing technology for FMCW lasers,achieving the unified transmission of multi-length information through a single optical fiber channel.This system scheme enables parallel measurement of multiple targets and enhances the measurement accuracy of single targets by measuring the mean through multichannels,featuring versatility.In experiment,we achieved an overall absolute distance measurement accuracy better than 14μm and individual channel accuracy better than 20μm for non-cooperative targets at a distance of 1.3 m.The overall measurement standard deviation reached 14.73μm,and the minimum Allan deviation was 189 nm at a 2.84 s averaging time.Additionally,we demonstrated 3D imaging experiments with“TIF”patterned cardboard and corridor stairs,obtained data precision better than 0.8 cm,and achieved high reliability in 3D imaging. 展开更多
关键词 time-domain wavelength division multiplexing optical switch FMCW LiDAR 3D imaging multichannel ranging.
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Breaking the polarization bottleneck:An ultra-compact adiabatic structure-connected micro-ring that unifies wavelength and polarization multiplexing
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作者 Jianjun Yu 《Science China(Physics,Mechanics & Astronomy)》 2025年第10期309-310,共2页
The development of integrated optical communication systems demands efficient on-chip multidimensional multiplexing to enhance transmission capacity and network robustness[1].Traditional micro-ring resonators(MRRs)hav... The development of integrated optical communication systems demands efficient on-chip multidimensional multiplexing to enhance transmission capacity and network robustness[1].Traditional micro-ring resonators(MRRs)have emerged as promising candidates for wavelength-division multiplexing due to their compact footprint and wavelength-dependent resonance.However,a critical limitation arises from the effective refractive index mismatch between transverse electric(TE)and transverse magnetic(TM)polarizations,which introduces complexities in polarization channel multiplexing[2]. 展开更多
关键词 wavelength division multiplexing adiabatic structure effective refractive index mismatch POLARIZATION micro ring resonators integrated optical communication systems
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All-optical spiking processing and reservoir computing with a passive silicon microring and wavelength-time division multiplexing
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作者 GIOVANNI DONATI STEFANO BIASI +1 位作者 LORENZO PAVESI ANTONIO HURTADO 《Photonics Research》 2025年第9期2641-2653,共13页
Neuromorphic photonic systems offer significant advantages for parallel,high-speed,and low-power computing,among which spiking neural networks emerge as a powerful bio-inspired alternative.This study demonstrates,to o... Neuromorphic photonic systems offer significant advantages for parallel,high-speed,and low-power computing,among which spiking neural networks emerge as a powerful bio-inspired alternative.This study demonstrates,to our knowledge,a novel approach to all-optical spiking processing and reservoir computing using passive silicon microring resonators(MRRs).A key innovation is the demonstration of deterministic optical spiking and spectro-temporal coincidence detection without the need for pump-and-probe methods,simplifying the architecture and improving efficiency.By leveraging injection of excitatory optical signals at negative wavelength detuning relative to the MRR’s cold resonances,the system delivers prompt and high-contrast optical spiking events,essential for effective chip-integrated photonic spiking neural networks.Building on this,a photonic spiking reservoir computer is implemented using a single silicon MRR.The system encodes input information through a novel spectro-temporal scheme and classifies the Iris-Flower dataset with 92%accuracy.This performance is achieved with just 48 reservoir virtual nodes,averaging only three spikes per flower sample,hence highlighting the system’s efficiency and sparsity.These findings unlock novel neuromorphic photonic frameworks with MRRs,enabling sparse all-optical spiking processing and reservoir computing,particularly promising to be adapted in future coupled MRR structures and with binary output weights for light-enabled edge computing and sensing applications. 展开更多
关键词 neuromorphic photonic systems deterministic optical spiking passive silicon microring reservoir computing passive silicon microring resonators mrrs spiking neural networks wavelength time division multiplexing all optical spiking processing
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