All‐Optical Nonlinear Neuron Based on Metallic Quantum Wells
暂无分享,去创建一个
Haoliang Qian | Hua Shao | Bingtao Gao | Junru Niu | Yiming Feng | Yiyun Zhang | Hongsheng Chen | Hua Shao | Ying Li
[1] M. A. Butt,et al. Optical Computing: Status and Perspectives , 2022, Nanomaterials.
[2] Mo Li,et al. Enabling scalable optical computing in synthetic frequency dimension using integrated cavity acousto-optics , 2021, Nature Communications.
[3] Jia Liu,et al. Research progress in optical neural networks: theory, applications and developments , 2021, PhotoniX.
[4] M. Rasras,et al. Low Insertion Loss Plasmon-Enhanced Graphene All-Optical Modulator , 2021, ACS omega.
[5] Qionghai Dai,et al. Large-scale neuromorphic optoelectronic computing with a reconfigurable diffractive processing unit , 2020, Nature Photonics.
[6] A. Pan,et al. Giant nonlinear optical activity in two-dimensional palladium diselenide , 2020, Nature Communications.
[7] Zhaowei Liu,et al. Nanoscale optical pulse limiter enabled by refractory metallic quantum wells , 2020, Science Advances.
[8] A. Boes,et al. Photonic perceptron based on a Kerr microcomb for high-speed, scalable, optical neural networks , 2020, 2020 International Topical Meeting on Microwave Photonics (MWP).
[9] Xi Chen,et al. Perspective on photonic memristive neuromorphic computing , 2020 .
[10] Xiankai Sun,et al. Acousto-optic modulation of photonic bound state in the continuum , 2020, Light: Science & Applications.
[11] D. G. Rabus,et al. Integrated Ring Resonators , 2020, Springer Series in Optical Sciences.
[12] C. Wright,et al. All-optical spiking neurosynaptic networks with self-learning capabilities , 2019, Nature.
[13] Huiying Wang,et al. Artificial neuron based on nonlinear polarization rotation in a semiconductor optical amplifier , 2019, Optics Communications.
[14] Torsten Meier,et al. Nonlinear integrated quantum electro-optic circuits , 2018, Science Advances.
[15] Michael Pfeiffer,et al. Deep Learning With Spiking Neurons: Opportunities and Challenges , 2018, Front. Neurosci..
[16] P. Winzer,et al. Integrated lithium niobate electro-optic modulators operating at CMOS-compatible voltages , 2018, Nature.
[17] David R. Smith,et al. Hybrid graphene metasurfaces for high-speed mid-infrared light modulation and single-pixel imaging , 2018, Light, science & applications.
[18] V. Shalaev,et al. 1 Supplementary Information : Low loss Plasmon-assisted electro-optic modulator , 2018 .
[19] Demetrios N. Christodoulides,et al. Non-Hermitian physics and PT symmetry , 2018, Nature Physics.
[20] Ciyuan Qiu,et al. All-optical control of light on a graphene-on-silicon nitride chip using thermo-optic effect , 2017, Scientific Reports.
[21] S. Maier,et al. Giant nonlinear response at a plasmonic nanofocus drives efficient four-wave mixing , 2017, Science.
[22] J. Leuthold,et al. High-speed plasmonic modulator in a single metal layer , 2017, Science.
[23] Limin Tong,et al. 2D Materials for Optical Modulation: Challenges and Opportunities , 2017, Advanced materials.
[24] Noa Mazurski,et al. Strong coupling and high-contrast all-optical modulation in atomic cladding waveguides , 2016, Nature Communications.
[25] Adonis Bogris,et al. Artificial Neuron Based on Integrated Semiconductor Quantum Dot Mode-Locked Lasers , 2016, Scientific Reports.
[26] Zhaowei Liu,et al. Giant Kerr response of ultrathin gold films from quantum size effect , 2016, Nature Communications.
[27] Yan-qing Lu,et al. An all-optical modulator based on a stereo graphene–microfiber structure , 2015, Light: Science & Applications.
[28] David Hillerkuss,et al. All-plasmonic Mach–Zehnder modulator enabling optical high-speed communication at the microscale , 2015, Nature Photonics.
[29] Ashok V. Krishnamoorthy,et al. Silicon photonics: Energy-efficient communication , 2011 .
[30] Filippo Levi,et al. Double-pass acousto-optic modulator system , 2005 .
[31] Qianfan Xu,et al. Micrometre-scale silicon electro-optic modulator , 2005, Nature.
[32] M. Lipson,et al. All-optical control of light on a silicon chip , 2004, Nature.
[33] J. D. Joannopoulos,et al. Enhancement of nonlinear effects using photonic crystals , 2004, Nature materials.
[34] David A. B. Miller,et al. Linear and nonlinear optical properties of semiconductor quantum wells , 1989 .