Design of silicon waveguides with integrated graphene oxide films for nonlinear optics
暂无分享,去创建一个
Jiayang Wu | D. Moss | B. Jia | L. Jia | Yuning Zhang | Y. Qu
[1] Jiayang Wu,et al. Analysis of Four-Wave Mixing in Silicon Nitride Waveguides Integrated With 2D Layered Graphene Oxide Films , 2021, Journal of Lightwave Technology.
[2] Xingyuan Xu,et al. Tunable Broadband RF Photonic Fractional Hilbert Transformer Based on a Soliton Crystal Microcomb , 2021 .
[3] S. Chu,et al. Laser cavity solitons and turing patterns in microresonator filtered lasers: Properties and perspectives , 2021 .
[4] Roberto Morandotti,et al. Optical data transmission at 44 terabits/s with a Kerr soliton crystal microcomb , 2021, OPTO.
[5] Roberto Morandotti,et al. Photonic convolutional accelerator and neural network in the Tera-OPs regime based on Kerr microcombs , 2021, OPTO.
[6] Roberto Morandotti,et al. RF and microwave photonic, fractional differentiation, integration, and Hilbert transforms based on Kerr micro-combs , 2021, OPTO.
[7] R. Morandotti,et al. Photonic microwave and RF channelizers based on Kerr micro-combs , 2021, OPTO.
[8] Jiayang Wu,et al. Graphene Oxide for Integrated Photonics and Flat Optics , 2020, Advanced materials.
[9] A. Boes,et al. Ultra-high bandwidth optical data transmission with a microcomb , 2020, 2020 International Topical Meeting on Microwave Photonics (MWP).
[10] A. Boes,et al. Photonic RF Arbitrary Waveform Generator Based on a Soliton Crystal Micro-Comb Source , 2020, Journal of Lightwave Technology.
[11] Jiayang Wu,et al. Enhanced Four‐Wave Mixing in Silicon Nitride Waveguides Integrated with 2D Layered Graphene Oxide Films , 2020, Advanced Optical Materials.
[12] Dirk Englund,et al. Programmable photonic circuits , 2020, Nature.
[13] A. Boes,et al. Broadband Photonic RF Channelizer With 92 Channels Based on a Soliton Crystal Microcomb , 2020, Journal of Lightwave Technology.
[14] Yikai Su,et al. Silicon Photonics: Silicon Photonic Platform for Passive Waveguide Devices: Materials, Fabrication, and Applications (Adv. Mater. Technol. 8/2020) , 2020 .
[15] Jiayang Wu,et al. Enhanced Kerr nonlinearity and nonlinear figure of merit in silicon nanowires integrated with 2D graphene oxide films. , 2020, ACS applied materials & interfaces.
[16] A. Mitchell,et al. Photonic RF and microwave filters based on 49 GHz and 200 GHz Kerr microcombs , 2020 .
[17] A. Boes,et al. Ultra-dense optical data transmission over standard fibre with a single chip source , 2020, Nature Communications.
[18] Dries Vercruysse,et al. 4H-silicon-carbide-on-insulator for integrated quantum and nonlinear photonics , 2020 .
[19] Roberto Morandotti,et al. Photonic RF Phase-Encoded Signal Generation With a Microcomb Source , 2020, Journal of Lightwave Technology.
[20] B. Jia,et al. Structured graphene metamaterial selective absorbers for high efficiency and omnidirectional solar thermal energy conversion , 2020, Nature Communications.
[21] Xingyuan Xu,et al. 2D Layered Graphene Oxide Films Integrated with Micro-Ring Resonators for Enhanced Nonlinear Optics. , 2020, Small.
[22] H. Tsang,et al. Enhanced four-wave mixing with MoS2 on a silicon waveguide , 2020, Journal of Optics.
[23] Roberto Morandotti,et al. Broadband Microwave Frequency Conversion Based on an Integrated Optical Micro-Comb Source , 2020, Journal of Lightwave Technology.
[24] Xingyuan Xu,et al. RF and Microwave Fractional Differentiator Based on Photonics , 2020, IEEE Transactions on Circuits and Systems II: Express Briefs.
[25] Roberto Morandotti,et al. Microwave and RF Photonic Fractional Hilbert Transformer Based on a 50 GHz Kerr Micro-Comb , 2019, Journal of Lightwave Technology.
[26] Roberto Morandotti,et al. Microcomb-Based Photonic RF Signal Processing , 2019, IEEE Photonics Technology Letters.
[27] Xingyuan Xu,et al. Graphene oxide waveguide and micro-ring resonator polarizers , 2019, Micro + Nano Materials, Devices, and Applications.
[28] C. Monat,et al. Ultrafast saturable absorption dynamics in hybrid graphene/Si3N4 waveguides , 2019, APL Photonics.
[29] B. Jia,et al. A 90-nm-thick graphene metamaterial for strong and extremely broadband absorption of unpolarized light , 2019, Nature Photonics.
[30] A. Yu,et al. Graphene-Based Multilayered Metamaterials with Phototunable Architecture for on-Chip Photonic Devices , 2019, ACS Photonics.
[31] S. Chu,et al. Laser cavity-soliton microcombs , 2019, Nature Photonics.
[32] Jiayang Wu,et al. Advanced Adaptive Photonic RF Filters with 80 Taps Based on an Integrated Optical Micro-Comb Source , 2019, Journal of Lightwave Technology.
[33] Roberto Morandotti,et al. High performance RF filters via bandwidth scaling with Kerr micro-combs , 2019, APL Photonics.
[34] Raman Kashyap,et al. High-dimensional one-way quantum processing implemented on d-level cluster states , 2018, Nature Physics.
[35] Roberto Morandotti,et al. Invited Article: Enhanced four-wave mixing in waveguides integrated with graphene oxide , 2018, APL Photonics.
[36] Roberto Morandotti,et al. Continuously tunable orthogonally polarized RF optical single sideband generator based on micro-ring resonators , 2018, Journal of Optics.
[37] Roberto Morandotti,et al. Orthogonally Polarized RF Optical Single Sideband Generation and Dual-Channel Equalization Based on an Integrated Microring Resonator , 2018, Journal of Lightwave Technology.
[38] Ting Wang,et al. Enhanced optical Kerr nonlinearity of graphene/Si hybrid waveguide , 2018, 2018 Asia Communications and Photonics Conference (ACP).
[39] Jens H. Schmid,et al. Subwavelength integrated photonics , 2018, Nature.
[40] H. Thienpont,et al. Graphene’s nonlinear-optical physics revealed through exponentially growing self-phase modulation , 2018, Nature Communications.
[41] Camille-Sophie Brès,et al. Mid-infrared frequency comb via coherent dispersive wave generation in silicon nitride nanophotonic waveguides , 2018 .
[42] Roberto Morandotti,et al. Photonic microwave true time delays for phased array antennas using a 49 GHz FSR integrated optical micro-comb source [Invited] , 2018 .
[43] P. Debnath,et al. Recent Advances in Black‐Phosphorus‐Based Photonics and Optoelectronics Devices , 2018 .
[44] Lukas Chrostowski,et al. Silicon Photonics Circuit Design: Methods, Tools and Challenges , 2018 .
[45] Roberto Morandotti,et al. Broadband RF Channelizer Based on an Integrated Optical Frequency Kerr Comb Source , 2018, Journal of Lightwave Technology.
[46] Roberto Morandotti,et al. RF Photonics: An Optical Microcombs’ Perspective , 2018, IEEE Journal of Selected Topics in Quantum Electronics.
[47] Roberto Morandotti,et al. Advanced RF and microwave functions based on an integrated optical frequency comb source. , 2018, Optics express.
[48] S. Maier,et al. Giant nonlinear response at a plasmonic nanofocus drives efficient four-wave mixing , 2017, Science.
[49] J. Zi,et al. Gate-tunable third-order nonlinear optical response of massless Dirac fermions in graphene , 2017, Nature Photonics.
[50] R. Morandotti,et al. Micro-combs: A novel generation of optical sources , 2017 .
[51] Roberto Morandotti,et al. Reconfigurable broadband microwave photonic intensity differentiator based on an integrated optical frequency comb source , 2017 .
[52] C. Schubert,et al. 1.024 Tb/s wavelength conversion in a silicon waveguide with reverse-biased p-i-n junction. , 2017, Optics express.
[53] Roberto Morandotti,et al. Parametric control of thermal self-pulsation in micro-cavities. , 2017, Optics letters.
[54] Ray T. Chen,et al. Observation of Third-order Nonlinearities in Graphene Oxide Film at Telecommunication Wavelengths , 2017, Scientific Reports.
[55] Roberto Morandotti,et al. Practical system for the generation of pulsed quantum frequency combs. , 2017, Optics express.
[56] Roberto Morandotti,et al. On-chip generation of high-dimensional entangled quantum states and their coherent control , 2017, Nature.
[57] Roberto Morandotti,et al. Type II microcomb generation in a filter-driven four wave mixing laser , 2017, 2017 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC).
[58] N. Matsuda,et al. Optical nonlinearity enhancement with graphene-decorated silicon waveguides , 2017, Scientific Reports.
[59] Jing Kong,et al. Chalcogenide glass-on-graphene photonics , 2017, 2017 Conference on Lasers and Electro-Optics (CLEO).
[60] P. Debnath,et al. Nonlinear Black Phosphorus for Ultrafast Optical Switching , 2017, Scientific Reports.
[61] Roberto Morandotti,et al. Passively mode-locked laser with an ultra-narrow spectral width , 2017, Nature Photonics.
[62] S. Massar,et al. Measuring the nonlinear refractive index of graphene using the optical Kerr effect method. , 2016, Optics letters.
[63] S. Chu,et al. Generation of multiphoton entangled quantum states by means of integrated frequency combs , 2016, Science.
[64] Ming Li,et al. A fully reconfigurable photonic integrated signal processor , 2016, Nature Photonics.
[65] T. Kippenberg,et al. Photonic Damascene process for integrated high-Q microresonator based nonlinear photonics , 2015, 1511.05716.
[66] Peter T. Rakich,et al. Large Brillouin amplification in silicon , 2015, Nature Photonics.
[67] H. Tsang,et al. Enhanced optical Kerr nonlinearity of MoS 2 on silicon waveguides , 2015 .
[68] Min Gu,et al. Highly efficient and ultra-broadband graphene oxide ultrathin lenses with three-dimensional subwavelength focusing , 2015, Nature Communications.
[69] David J. Moss,et al. Midinfrared supercontinuum generation from 2 to 6 μm in a silicon nanowire , 2015 .
[70] Roberto Morandotti,et al. Cross-polarized photon-pair generation and bi-chromatically pumped optical parametric oscillation on a chip , 2015, Nature Communications.
[71] Roberto Morandotti,et al. Integrated frequency comb source based Hilbert transformer for wideband microwave photonic phase analysis. , 2015, Optics express.
[72] Yongtian Wang,et al. Athermally photoreduced graphene oxides for three-dimensional holographic images , 2015, Nature Communications.
[73] B. Jia,et al. In Situ Third‐Order Non‐linear Responses During Laser Reduction of Graphene Oxide Thin Films Towards On‐Chip Non‐linear Photonic Devices , 2014, Advanced materials.
[74] Qi Jie Wang,et al. Broadband Saturable Absorption of Graphene Oxide Thin Film and Its Application in Pulsed Fiber Lasers , 2014, IEEE Journal of Selected Topics in Quantum Electronics.
[75] Michael Galili,et al. Phase regeneration of DPSK signals in a silicon waveguide with reverse-biased p-i-n junction. , 2014, Optics express.
[76] R. Morandotti,et al. New CMOS-compatible platforms based on silicon nitride and Hydex for nonlinear optics , 2013, Nature Photonics.
[77] Roberto Morandotti,et al. Self-locked optical parametric oscillation in a CMOS compatible microring resonator: a route to robust optical frequency comb generation on a chip. , 2013, Optics express.
[78] S. Coen,et al. Ultraweak long-range interactions of solitons observed over astronomical distances , 2013, Nature Photonics.
[79] Dan-Xia Xu,et al. Polarization management for silicon photonic integrated circuits , 2013 .
[80] Michal Lipson,et al. Nonlinear silicon photonics , 2012, 2012 17th Opto-Electronics and Communications Conference.
[81] Andrzej Gajda,et al. Highly efficient CW parametric conversion at 1550 nm in SOI waveguides by reverse biased p-i-n junction. , 2012, Optics express.
[82] A. M. van der Zande,et al. Regenerative oscillation and four-wave mixing in graphene optoelectronics , 2012, Nature Photonics.
[83] Hui Chen,et al. Silicon photonics: from a microresonator perspective , 2012 .
[84] M. El‐Kady,et al. Laser Scribing of High-Performance and Flexible Graphene-Based Electrochemical Capacitors , 2012, Science.
[85] Yong‐Lai Zhang,et al. Bandgap Tailoring and Synchronous Microdevices Patterning of Graphene Oxides , 2012 .
[86] Roberto Morandotti,et al. Sub-picosecond phase-sensitive optical pulse characterization on a chip , 2011 .
[87] Wei Chen,et al. Giant two-photon absorption in bilayer graphene. , 2011, Nano letters.
[88] Xiang Zhang,et al. A graphene-based broadband optical modulator , 2011, Nature.
[89] G. Eda,et al. Graphene oxide as a chemically tunable platform for optical applications. , 2010, Nature chemistry.
[90] D. J. Moss,et al. On-chip CMOS-compatible all-optical integrator , 2010, Nature communications.
[91] Roberto Morandotti,et al. Subpicosecond optical pulse compression via an integrated nonlinear chirper. , 2010, Optics express.
[92] Roberto Morandotti,et al. Efficient wavelength conversion and net parametric gain via four wave mixing in a high index doped silica waveguide. , 2010, Optics express.
[93] Lorenzo Pavesi,et al. Ultrafast all-optical switching in a silicon-nanocrystal-based silicon slot waveguide at telecom wavelengths. , 2010, Nano letters.
[94] Roberto Morandotti,et al. Supercontinuum generation in a high index doped silica glass spiral waveguide. , 2010, Optics express.
[95] Zhenhua Ni,et al. Atomic‐Layer Graphene as a Saturable Absorber for Ultrafast Pulsed Lasers , 2009, 0910.5820.
[96] F. Diederich,et al. All-optical high-speed signal processing with silicon–organic hybrid slot waveguides , 2009 .
[97] Roberto Morandotti,et al. Efficient self-phase modulation in low loss, high index doped silica glass integrated waveguides. , 2009, Optics express.
[98] Roberto Morandotti,et al. Nonlinear Optics in Doped Silica Glass Integrated Waveguide Structures , 2008, 2103.00351.
[99] Reza Salem,et al. Silicon-chip-based ultrafast optical oscilloscope , 2008, Nature.
[100] G. Agrawal,et al. Impact of two-photon absorption on self-phase modulation in silicon waveguides. , 2007, Optics letters.
[101] O. Bang,et al. Supercontinuum generation in photonic crystal fibres , 2007 .
[102] M. Paniccia,et al. Demonstration of wavelength conversion at 40 Gb/s data rate in silicon waveguides. , 2006, Optics express.
[103] J. Dudley,et al. Supercontinuum generation in photonic crystal fiber , 2006 .
[104] F. Payne,et al. A theoretical analysis of scattering loss from planar optical waveguides , 1994 .
[105] K. Chiang,et al. Performance of the effective-index method for the analysis of dielectric waveguides. , 1991, Optics letters.
[106] G I Stegeman,et al. Two-photon absorption as a limitation to all-optical switching. , 1989, Optics letters.
[107] D. Miller,et al. Room temperature excitonic nonlinear absorption and refraction in GaAs/AlGaAs multiple quantum well structures , 1984 .
[108] A. Mitchell,et al. Photonic radio frequency channelizers based on Kerr optical micro-combs , 2021 .
[109] R. Morandotti,et al. Quantum optical micro-combs , 2019 .
[110] Roberto Morandotti,et al. CMOS-compatible integrated optical hyper-parametric oscillator , 2010 .
[111] Michal Lipson,et al. CMOS-compatible multiple-wavelength oscillator for on-chip optical interconnects , 2010 .