Artykuły w czasopismach na temat „Photonic Neural Network”
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Han, Yanan, Shuiying Xiang, Yuna Zhang, Shuang Gao, Aijun Wen i Yue Hao. "An All-MRR-Based Photonic Spiking Neural Network for Spike Sequence Learning". Photonics 9, nr 2 (20.02.2022): 120. http://dx.doi.org/10.3390/photonics9020120.
Pełny tekst źródłaMarquez, Bicky A., Hugh Morison, Zhimu Guo, Matthew Filipovich, Paul R. Prucnal i Bhavin J. Shastri. "Graphene-based photonic synapse for multi wavelength neural networks". MRS Advances 5, nr 37-38 (2020): 1909–17. http://dx.doi.org/10.1557/adv.2020.327.
Pełny tekst źródłaWang, Ruiting, Pengfei Wang, Chen Lyu, Guangzhen Luo, Hongyan Yu, Xuliang Zhou, Yejin Zhang i Jiaoqing Pan. "Multicore Photonic Complex-Valued Neural Network with Transformation Layer". Photonics 9, nr 6 (28.05.2022): 384. http://dx.doi.org/10.3390/photonics9060384.
Pełny tekst źródłaFerreira de Lima, Thomas, Bhavin J. Shastri, Alexander N. Tait, Mitchell A. Nahmias i Paul R. Prucnal. "Progress in neuromorphic photonics". Nanophotonics 6, nr 3 (11.03.2017): 577–99. http://dx.doi.org/10.1515/nanoph-2016-0139.
Pełny tekst źródłaPai, Sunil, Zhanghao Sun, Tyler W. Hughes, Taewon Park, Ben Bartlett, Ian A. D. Williamson, Momchil Minkov i in. "Experimentally realized in situ backpropagation for deep learning in photonic neural networks". Science 380, nr 6643 (28.04.2023): 398–404. http://dx.doi.org/10.1126/science.ade8450.
Pełny tekst źródłaFu, Chentao, Shuiying Xiang, Yanan Han, Ziwei Song i Yue Hao. "Multilayer Photonic Spiking Neural Networks: Generalized Supervised Learning Algorithm and Network Optimization". Photonics 9, nr 4 (25.03.2022): 217. http://dx.doi.org/10.3390/photonics9040217.
Pełny tekst źródłaXia, Chengpeng, Yawen Chen, Haibo Zhang, Hao Zhang, Fei Dai i Jigang Wu. "Efficient neural network accelerators with optical computing and communication". Computer Science and Information Systems, nr 00 (2022): 66. http://dx.doi.org/10.2298/csis220131066x.
Pełny tekst źródłaChristensen, Thomas, Charlotte Loh, Stjepan Picek, Domagoj Jakobović, Li Jing, Sophie Fisher, Vladimir Ceperic, John D. Joannopoulos i Marin Soljačić. "Predictive and generative machine learning models for photonic crystals". Nanophotonics 9, nr 13 (29.06.2020): 4183–92. http://dx.doi.org/10.1515/nanoph-2020-0197.
Pełny tekst źródłaZhang, Lulu, Yongzhi Zhang, Furong Liu, Qingyuan Chen, Yangbo Lian i Quanlong Ma. "On-Chip Photonic Synapses with All-Optical Memory and Neural Network Computation". Micromachines 14, nr 1 (27.12.2022): 74. http://dx.doi.org/10.3390/mi14010074.
Pełny tekst źródłaQuan, Zhiqiang, Yuanjian Wan i Jian Wang. "On-chip ultra-compact nonvolatile photonic synapse". Applied Physics Letters 121, nr 17 (24.10.2022): 171102. http://dx.doi.org/10.1063/5.0115564.
Pełny tekst źródłaZhang, Qi, Zhuangzhuang Xing i Duan Huang. "Implementation of Pruned Backpropagation Neural Network Based on Photonic Integrated Circuits". Photonics 8, nr 9 (30.08.2021): 363. http://dx.doi.org/10.3390/photonics8090363.
Pełny tekst źródłaJiang, Jiaqi, i Jonathan A. Fan. "Multiobjective and categorical global optimization of photonic structures based on ResNet generative neural networks". Nanophotonics 10, nr 1 (22.09.2020): 361–69. http://dx.doi.org/10.1515/nanoph-2020-0407.
Pełny tekst źródłaFerreira de Lima, Thomas, Alexander N. Tait, Armin Mehrabian, Mitchell A. Nahmias, Chaoran Huang, Hsuan-Tung Peng, Bicky A. Marquez i in. "Primer on silicon neuromorphic photonic processors: architecture and compiler". Nanophotonics 9, nr 13 (10.08.2020): 4055–73. http://dx.doi.org/10.1515/nanoph-2020-0172.
Pełny tekst źródłaMiscuglio, Mario, Jiawei Meng, Armin Mehrabian, Volker Sorger, Omer Yesiliurt, Ludmila Prokopeva, Alexander Kildishev, Yifei Zhang i Juejun Hu. "Artificial Synapse with Mnemonic Functionality using GSST-based Photonic Integrated Memory". Applied Computational Electromagnetics Society 35, nr 11 (5.02.2021): 1447–49. http://dx.doi.org/10.47037/2020.aces.j.351192.
Pełny tekst źródłaTian, Ye, Yang Zhao, Shengping Liu, Qiang Li, Wei Wang, Junbo Feng i Jin Guo. "Scalable and compact photonic neural chip with low learning-capability-loss". Nanophotonics 11, nr 2 (22.12.2021): 329–44. http://dx.doi.org/10.1515/nanoph-2021-0521.
Pełny tekst źródłaAloafi, Tahani A., Azhari A. Elhag, Taghreed M. Jawa, Neveen Sayed-Ahmed, Fatimah S. Bayones, Jamel Bouslimi i Marin Marin. "Predication and Photon Statistics of a Three-Level System in the Photon Added Negative Binomial Distribution". Symmetry 14, nr 2 (31.01.2022): 284. http://dx.doi.org/10.3390/sym14020284.
Pełny tekst źródłaWang, Yan, Wei Cheng, Junbo Feng, Shengyin Zang, Hao Cheng, Zheng Peng, Xiaodong Ren i in. "Silicon photonic secure communication using artificial neural network". Chaos, Solitons & Fractals 163 (październik 2022): 112524. http://dx.doi.org/10.1016/j.chaos.2022.112524.
Pełny tekst źródłaZarei, Sanaz, Mahmood-reza Marzban i Amin Khavasi. "Integrated photonic neural network based on silicon metalines". Optics Express 28, nr 24 (18.11.2020): 36668. http://dx.doi.org/10.1364/oe.404386.
Pełny tekst źródłaSunny, Febin P., Asif Mirza, Mahdi Nikdast i Sudeep Pasricha. "ROBIN: A Robust Optical Binary Neural Network Accelerator". ACM Transactions on Embedded Computing Systems 20, nr 5s (31.10.2021): 1–24. http://dx.doi.org/10.1145/3476988.
Pełny tekst źródłaArgyris, Apostolos. "Photonic neuromorphic technologies in optical communications". Nanophotonics 11, nr 5 (19.01.2022): 897–916. http://dx.doi.org/10.1515/nanoph-2021-0578.
Pełny tekst źródłaSheng, Huayi. "Review of Integrated Diffractive Deep Neural Networks". Highlights in Science, Engineering and Technology 24 (27.12.2022): 264–78. http://dx.doi.org/10.54097/hset.v24i.3957.
Pełny tekst źródłaYang Lingyan, 杨凌雁, i 张林 Zhang Lin. "光蓄水池神经网络研究进展". Chinese Journal of Lasers 48, nr 19 (2021): 1906001. http://dx.doi.org/10.3788/cjl202148.1906001.
Pełny tekst źródłaDe Marinis, Lorenzo, Marco Cococcioni, Odile Liboiron-Ladouceur, Giampiero Contestabile, Piero Castoldi i Nicola Andriolli. "Photonic Integrated Reconfigurable Linear Processors as Neural Network Accelerators". Applied Sciences 11, nr 13 (5.07.2021): 6232. http://dx.doi.org/10.3390/app11136232.
Pełny tekst źródłaRoques-Carmes, Charles. "Learning photons go backward". Science 380, nr 6643 (28.04.2023): 341–42. http://dx.doi.org/10.1126/science.adh0724.
Pełny tekst źródłaSun, Yichen, Mingli Dong, Mingxin Yu, Jiabin Xia, Xu Zhang, Yuchen Bai, Lidan Lu i Lianqing Zhu. "Nonlinear All-Optical Diffractive Deep Neural Network with 10.6 μm Wavelength for Image Classification". International Journal of Optics 2021 (27.02.2021): 1–16. http://dx.doi.org/10.1155/2021/6667495.
Pełny tekst źródłaGao, Shuang, Shuiying Xiang, Ziwei Song, Yanan Han i Yue Hao. "All-optical Sudoku solver with photonic spiking neural network". Optics Communications 495 (wrzesień 2021): 127068. http://dx.doi.org/10.1016/j.optcom.2021.127068.
Pełny tekst źródłaEl-Mosalmy, Dalia D., M. F. O. Hameed, Nihal F. F. Areed i S. S. A. Obayya. "Novel neural network based optimization approach for photonic devices". Optical and Quantum Electronics 46, nr 3 (16.01.2014): 439–53. http://dx.doi.org/10.1007/s11082-013-9869-8.
Pełny tekst źródłaHsiao, Fu-Li, Hsin-Feng Lee, Su-Chao Wang, Yu-Ming Weng i Ying-Pin Tsai. "Artificial Neural Network for Photonic Crystal Band Structure Prediction in Different Geometric Parameters and Refractive Indexes". Electronics 12, nr 8 (9.04.2023): 1777. http://dx.doi.org/10.3390/electronics12081777.
Pełny tekst źródłaDang, Dharanidhar, Sai Vineel Reddy Chittamuru, Sudeep Pasricha, Rabi Mahapatra i Debashis Sahoo. "BPLight-CNN: A Photonics-Based Backpropagation Accelerator for Deep Learning". ACM Journal on Emerging Technologies in Computing Systems 17, nr 4 (31.10.2021): 1–26. http://dx.doi.org/10.1145/3446212.
Pełny tekst źródłaJiang, Yue, Wenjia Zhang, Fan Yang i Zuyuan He. "Photonic Convolution Neural Network Based on Interleaved Time-Wavelength Modulation". Journal of Lightwave Technology 39, nr 14 (lipiec 2021): 4592–600. http://dx.doi.org/10.1109/jlt.2021.3076070.
Pełny tekst źródłaHuang, Chaoran, Shinsuke Fujisawa, Thomas Ferreira de Lima, Alexander N. Tait, Eric C. Blow, Yue Tian, Simon Bilodeau i in. "A silicon photonic–electronic neural network for fibre nonlinearity compensation". Nature Electronics 4, nr 11 (listopad 2021): 837–44. http://dx.doi.org/10.1038/s41928-021-00661-2.
Pełny tekst źródłaZhang, Tian, Jia Wang, Yihang Dan, Yuxiang Lanqiu, Jian Dai, Xu Han, Xiaojuan Sun i Kun Xu. "Efficient training and design of photonic neural network through neuroevolution". Optics Express 27, nr 26 (9.12.2019): 37150. http://dx.doi.org/10.1364/oe.27.037150.
Pełny tekst źródłaWang, Suhong, Shuiying Xiang, Genquan Han, Ziwei Song, Zhenxing Ren, Aijun Wen i Yue Hao. "Photonic Associative Learning Neural Network Based on VCSELs and STDP". Journal of Lightwave Technology 38, nr 17 (1.09.2020): 4691–98. http://dx.doi.org/10.1109/jlt.2020.2995083.
Pełny tekst źródłaBueno, J., S. Maktoobi, L. Froehly, I. Fischer, M. Jacquot, L. Larger i D. Brunner. "Reinforcement learning in a large-scale photonic recurrent neural network". Optica 5, nr 6 (20.06.2018): 756. http://dx.doi.org/10.1364/optica.5.000756.
Pełny tekst źródłaSkontranis, Menelaos, George Sarantoglou, Stavros Deligiannidis, Adonis Bogris i Charis Mesaritakis. "Time-Multiplexed Spiking Convolutional Neural Network Based on VCSELs for Unsupervised Image Classification". Applied Sciences 11, nr 4 (3.02.2021): 1383. http://dx.doi.org/10.3390/app11041383.
Pełny tekst źródłaXu, Xiaofeng, Lianqing Zhu, Wei Zhuang, Lidan Lu i Pei Yuan. "A Convolution Neural Network Implemented by Three 3 × 3 Photonic Integrated Reconfigurable Linear Processors". Photonics 9, nr 2 (29.01.2022): 80. http://dx.doi.org/10.3390/photonics9020080.
Pełny tekst źródłaLi, Renjie, Xiaozhe Gu, Yuanwen Shen, Ke Li, Zhen Li i Zhaoyu Zhang. "Smart and Rapid Design of Nanophotonic Structures by an Adaptive and Regularized Deep Neural Network". Nanomaterials 12, nr 8 (16.04.2022): 1372. http://dx.doi.org/10.3390/nano12081372.
Pełny tekst źródłaVan der Sande, Guy, Daniel Brunner i Miguel C. Soriano. "Advances in photonic reservoir computing". Nanophotonics 6, nr 3 (12.05.2017): 561–76. http://dx.doi.org/10.1515/nanoph-2016-0132.
Pełny tekst źródłaFornarelli, G., L. Mescia, F. Prudenzano, M. De Sario i F. Vacca. "A neural network model of erbium-doped photonic crystal fibre amplifiers". Optics & Laser Technology 41, nr 5 (lipiec 2009): 580–85. http://dx.doi.org/10.1016/j.optlastec.2008.10.010.
Pełny tekst źródłaChang, Wei-Shan, Ying-Pin Tsai, Chi-Tsung Chiang i Fu-Li Hsiao. "Using Autoencoder Artificial Neural Network to Predict Photonic Crystal Band Structure". Sensors and Materials 35, nr 8 (31.08.2023): 3045. http://dx.doi.org/10.18494/sam4514.
Pełny tekst źródłaGuo Pengxing, 郭鹏星, 刘志远 Liu Zhiyuan, 侯维刚 Hou Weigang i 郭磊 Guo Lei. "相变材料辅助的光子卷积神经网络加速器". Acta Optica Sinica 43, nr 4 (2023): 0415001. http://dx.doi.org/10.3788/aos221329.
Pełny tekst źródłaChen, Ying, Teng Liu, Wenyue Wang, Qiguang Zhu i Weihong Bi. "Refractive index sensing performance analysis of photonic crystal Mach–Zehnder interferometer based on BP neural network optimization". Modern Physics Letters B 29, nr 10 (20.04.2015): 1550040. http://dx.doi.org/10.1142/s0217984915500402.
Pełny tekst źródłaBile, Alessandro, Hamed Tari i Eugenio Fazio. "Episodic Memory and Information Recognition Using Solitonic Neural Networks Based on Photorefractive Plasticity". Applied Sciences 12, nr 11 (31.05.2022): 5585. http://dx.doi.org/10.3390/app12115585.
Pełny tekst źródłaHooten, Sean, Raymond G. Beausoleil i Thomas Van Vaerenbergh. "Inverse design of grating couplers using the policy gradient method from reinforcement learning". Nanophotonics 10, nr 15 (7.10.2021): 3843–56. http://dx.doi.org/10.1515/nanoph-2021-0332.
Pełny tekst źródłaShi, Bin, Nicola Calabretta i Ripalta Stabile. "Numerical Simulation of an InP Photonic Integrated Cross-Connect for Deep Neural Networks on Chip". Applied Sciences 10, nr 2 (9.01.2020): 474. http://dx.doi.org/10.3390/app10020474.
Pełny tekst źródłaSharma, Sunil, i Lokesh Tharani. "Use of AI Techniques on Photonic Crystal Sensing for the Detection of Tumor". Journal of Electronics, Electromedical Engineering, and Medical Informatics 4, nr 2 (29.04.2022): 62–69. http://dx.doi.org/10.35882/jeeemi.v4i2.2.
Pełny tekst źródłaKumar, Hardik, Tanya Jain, Mritunjay Sharma i Kamal Kishor. "Neural network approach for faster optical properties predictions for different PCF designs". Journal of Physics: Conference Series 2070, nr 1 (1.11.2021): 012001. http://dx.doi.org/10.1088/1742-6596/2070/1/012001.
Pełny tekst źródłaXiang, Shuiying, Zhenxing Ren, Yahui Zhang, Ziwei Song, Xingxing Guo, Genquan Han i Yue Hao. "Training a Multi-Layer Photonic Spiking Neural Network With Modified Supervised Learning Algorithm Based on Photonic STDP". IEEE Journal of Selected Topics in Quantum Electronics 27, nr 2 (marzec 2021): 1–9. http://dx.doi.org/10.1109/jstqe.2020.3005589.
Pełny tekst źródłaShi, Bin, Nicola Calabretta i Ripalta Stabile. "Deep Neural Network Through an InP SOA-Based Photonic Integrated Cross-Connect". IEEE Journal of Selected Topics in Quantum Electronics 26, nr 1 (styczeń 2020): 1–11. http://dx.doi.org/10.1109/jstqe.2019.2945548.
Pełny tekst źródłaWei, Pu, Cheng Cheng i Tingting Liu. "A Photonic Transducer-Based Optical Current Sensor Using Back-Propagation Neural Network". IEEE Photonics Technology Letters 28, nr 14 (15.07.2016): 1513–16. http://dx.doi.org/10.1109/lpt.2016.2557339.
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