Towards a high-density photonic tensor core enabled by intensity-modulated microrings and photonic wire bonding
暂无分享,去创建一个
[1] P. Prucnal,et al. Broadband radio-frequency signal processing with neuromorphic photonics , 2022, OPTO.
[2] A. Tait. Quantifying power use in silicon photonic neural networks , 2021, Physical Review Applied.
[3] F. Yaman,et al. A silicon photonic–electronic neural network for fibre nonlinearity compensation , 2021, Nature Electronics.
[4] L. Chrostowski,et al. Scaling Up Silicon Photonic-based Accelerators: Challenges and Opportunities, and Roadmapping with Silicon Photonics 2.0 , 2021, ArXiv.
[5] R. Dahlstrom,et al. Challenges and opportunities , 2021, Foundations of a Sustainable Economy.
[6] Hsuan-Tung Peng,et al. A Photonic-Circuits-Inspired Compact Network: Toward Real-Time Wireless Signal Classification at the Edge , 2021, ArXiv.
[7] A. Eshaghi,et al. Interferometric Coupling-based Modulator for Large-Scale Integrated Photonic Systems , 2021, 2021 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC).
[8] Sudip Shekhar,et al. Photonic pattern reconstruction enabled by on-chip online learning and inference , 2021 .
[9] A. Eshaghi,et al. Photonic Computing to Accelerate Data Processing in Wireless Communications , 2021, Optics express.
[10] Odile Liboiron-Ladouceur,et al. A silicon photonic evanescent-field sensor architecture using a fixed-wavelength laser , 2021, OPTO.
[11] Linjie Zhou,et al. Broadband continuously tunable microwave photonic delay line based on cascaded silicon microrings. , 2021, Optics express.
[12] G. Lo,et al. An optical neural chip for implementing complex-valued neural network , 2021, Nature Communications.
[13] A. Majumdar,et al. Non‐Volatile Reconfigurable Integrated Photonics Enabled by Broadband Low‐Loss Phase Change Material , 2021, Advanced Optical Materials.
[14] G. Moore,et al. Anomalous collapses of Nares Strait ice arches leads to enhanced export of Arctic sea ice , 2021, Nature communications.
[15] G. Ferrari,et al. Polarization-transparent silicon photonic add-drop multiplexer with wideband hitless tuneability , 2020, Nature Communications.
[16] Xuan Li,et al. Parallel convolutional processing using an integrated photonic tensor core , 2021, Nature.
[17] Bhavin J. Shastri,et al. Photonics for artificial intelligence and neuromorphic computing , 2020, Nature Photonics.
[18] B. Cheng,et al. 56 Gbps high-speed Ge electro-absorption modulator , 2020, Photonics Research.
[19] Kristjan H. Greenewald,et al. The Computational Limits of Deep Learning , 2020, Ninth Computing within Limits 2023.
[20] Wolfgang Freude,et al. Hybrid multi-chip assembly of optical communication engines by in situ 3D nano-lithography , 2020, Light, science & applications.
[21] Bhavin J. Shastri,et al. Demonstration of scalable microring weight bank control for large-scale photonic integrated circuits , 2020 .
[22] Odile Liboiron-Ladouceur,et al. Theoretical and Experimental Analysis of a 4 × 4 Reconfigurable MZI-Based Linear Optical Processor , 2020, Journal of Lightwave Technology.
[23] Ute Troppenz,et al. InP/Silicon Hybrid External-Cavity Lasers (ECL) using Photonic Wirebonds as Coupling Elements , 2020, 2020 Optical Fiber Communications Conference and Exhibition (OFC).
[24] Weifeng Zhang,et al. Photonic integrated field-programmable disk array signal processor , 2020, Nature Communications.
[25] Yao Wang,et al. A scalable photonic computer solving the subset sum problem , 2020, Science Advances.
[26] Paul R. Prucnal,et al. Photonic Multiply-Accumulate Operations for Neural Networks , 2020, IEEE Journal of Selected Topics in Quantum Electronics.
[27] G. Dreyfuss,et al. U1 snRNP regulates cancer cell migration and invasion , 2019, bioRxiv.
[28] Paul R. Prucnal,et al. Digital Electronics and Analog Photonics for Convolutional Neural Networks (DEAP-CNNs) , 2019, IEEE Journal of Selected Topics in Quantum Electronics.
[29] Anthony H. K. Park,et al. Compact wavelength- and bandwidth-tunable microring modulator. , 2019, Optics express.
[30] Rongqing Hui,et al. Introduction to Fiber-Optic Communications , 2019 .
[31] N. Engheta,et al. Inverse-designed metastructures that solve equations , 2019, Science.
[32] L. Chrostowski,et al. Photoconductive heaters enable control of large-scale silicon photonic ring resonator circuits , 2018, Optica.
[33] Vladimir Liberman,et al. Broadband transparent optical phase change materials for high-performance nonvolatile photonics , 2018, Nature Communications.
[34] M. Kunitski,et al. Double-slit photoelectron interference in strong-field ionization of the neon dimer , 2018, Nature Communications.
[35] José Capmany,et al. Programmable True Time Delay Lines Using Integrated Waveguide Meshes , 2018, Journal of Lightwave Technology.
[36] E. Pop,et al. GST-on-silicon hybrid nanophotonic integrated circuits: a non-volatile quasi-continuously reprogrammable platform , 2018 .
[37] Aleksandar Nesic,et al. Hybrid integration of silicon photonics circuits and InP lasers by photonic wire bonding , 2018, Optica.
[38] P. Prucnal,et al. Neuromorphic photonic networks using silicon photonic weight banks , 2017, Scientific Reports.
[39] Dirk Englund,et al. Deep learning with coherent nanophotonic circuits , 2017, 2017 Fifth Berkeley Symposium on Energy Efficient Electronic Systems & Steep Transistors Workshop (E3S).
[40] Gregory R. Steinbrecher,et al. Quantum transport simulations in a programmable nanophotonic processor , 2015, Nature Photonics.
[41] P. Prucnal,et al. NEUROMORPHIC PHOTONICS , 2017 .
[42] Odile Liboiron-Ladouceur,et al. A Ring-Based 25 Gb/s DAC-Less PAM-4 Modulator , 2016, IEEE Journal of Selected Topics in Quantum Electronics.
[43] Ellen Zhou,et al. Silicon Photonic Neural Networks , 2016 .
[44] Nicolas A. F. Jaeger,et al. Crosstalk in SOI Microring Resonator-Based Filters , 2016, Journal of Lightwave Technology.
[45] Paul R. Prucnal,et al. Microring Weight Banks , 2016, IEEE Journal of Selected Topics in Quantum Electronics.
[46] L. Chrostowski,et al. Wavelength tuning and stabilization of microring-based filters using silicon in-resonator photoconductive heaters. , 2015, Optics express.
[47] Young-Kai Chen,et al. Photoresistive microring heater with resonance control loop , 2015, 2015 Conference on Lasers and Electro-Optics (CLEO).
[48] Gregory A. Howland,et al. On-Chip Quantum Interference from a Single Silicon Ring-Resonator Source , 2015, 1504.04335.
[49] L. Chrostowski,et al. Silicon Photonics Design: From Devices to Systems , 2015 .
[50] W. Freude,et al. Connecting Silicon Photonic Circuits to Multicore Fibers by Photonic Wire Bonding , 2015, Journal of Lightwave Technology.
[51] Paul R. Prucnal,et al. Broadcast and Weight: An Integrated Network For Scalable Photonic Spike Processing , 2014, Journal of Lightwave Technology.
[52] Yu Zhang,et al. Towards Adaptively Tuned Silicon Microring Resonators for Optical Networks-on-Chip Applications , 2014, IEEE Journal of Selected Topics in Quantum Electronics.
[53] W M J Green,et al. Coupling modulation of microrings at rates beyond the linewidth limit. , 2013, Optics express.
[54] R Schmogrow,et al. Photonic wire bonding: a novel concept for chip-scale interconnects. , 2012, Optics express.
[55] Michal Lipson,et al. Performance guidelines for WDM interconnects based on silicon microring resonators , 2011, CLEO: 2011 - Laser Science to Photonic Applications.
[56] Xin Wang,et al. 1x4 reconfigurable demultiplexing filter based on free-standing silicon racetrack resonators. , 2010, Optics express.
[57] Qianfan Xu,et al. Silicon microring resonators with 1.5-μm radius , 2008 .
[58] Miloš Popović,et al. Theory and design of high-index-contrast microphotonic circuits , 2008 .
[59] Alfred Driessen,et al. Ring-Resonator-Based Wavelength Filters , 2006 .