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Dataset results
22 results for “microcomb”
Dual chirped microcomb based parallel ranging at megapixel-line rates
<p>Available data for manuscript: "Dual chirped microcomb based parallel ranging at megapixel-line rates"</p> <p>Arxiv version: https://arxiv.org/abs/2101.03952</p> <p>Execution tested with Matlab 2019a or newer on Windows. Unzip folder to access files.</p> <p>For Figures and SI Figures execute "Figure*.m" files in corresponding subfolders.<br> Contact anton.lukashchuk@epfl.ch or anton.lukashchuk@skolkovotech.ru if problems with matlab code arise. <br> All matlab code remains under copyright by the authors: Anton Lukashchuk and Johann Riemensberger; the code is provided solely to be used to reproduce the figures of the aforementioned paper.</p> <p>Raw data for the figures is stored in folder .\Data. GDS file of Si3N4 photonic damascene waveguide resonators is stored in folder: GDS_design. </p>
Data and code for figures: Spatial multiplexing of soliton microcombs
<p>This dataset contains the data presented in the Figures of the paper Spatial multiplexing of soliton microcombs (doi:<a href="https://doi.org/10.1038/s41566-018-0256-7">https://doi.org/10.1038/s41566-018-0256-7</a>).</p> <p>The datasets and scripts were generated and tested using Matlab 2017.</p>
Data and code for figures: Tailoring microcombs with inverse-designed, meta-dispersion microresonators
<p>This dataset contains the data presented in the Figures of the paper Tailoring microcombs with inverse-designed, meta-dispersion microresonators. <em>Nat. Photon.</em> (2023) DOI: 10.1038/s41566-023-01252-7.</p> <p>Generated with MatlabR2022, the figureData.mat files contain the data for each panel and the associated createfigure.m code reads the data and assembles the plots.</p>
Data and code for figures: Ultralow-Noise Photonic Microwave Synthesis using a Soliton Microcomb-based Transfer Oscillator
<p>This repository contains the data and code for the paper "Ultralow-Noise Photonic Microwave Synthesis using a Soliton Microcomb-based Transfer Oscillator".</p>
Monolithic piezoelectric control of soliton microcombs
<p>Available data for "Monolithic piezoelectric control of soliton microcombs"</p> <p>This version (V4) is an updated version based on the previous version:</p> <p>V3: 10.5281/zenodo.3902867</p> <p>V2: 10.5281/zenodo.3741411</p> <p>V1: 10.5281/zenodo.3731488</p>
Massively parallel coherent laser ranging using soliton microcomb
<p>Available data for "Massively parallel coherent laser ranging using soliton microcomb", published in Nature 561, 164-170 on May 14th. </p> <p>DOI of original paper: https://doi.org/10.1038/s41586-020-2239-3</p> <p>URL of original paper: <a href="https://www.nature.com/articles/s41586-020-2239-3">https://www.nature.com/articles/s41586-020-2239-3</a></p> <p><br> Execution tested with Matlab 2019a or newer on Windows. Unzip folder to access files.</p> <p>For Figures and extended data Figures execute "Figure*.m" and "ExtDataFigure*.mat" files in corresponding subfolders.<br> Contact johann.riemensberger@epfl.ch or johann.riemensberger@gmail.com if problems with matlab code arise. <br> All matlab code remains under copyright by the authors: Johann Riemensberger and Wenle Weng and is provided solely to be used to reproduce the figures of the aforementioned paper.</p> <p>Raw data for the figures is stored in folder .\Data, preprocessed data is stored in folder .\ProcessedData. GDS file of Si3N4 photonic damascene waveguide resonators is stored in folder: GDS_design. </p>
Platicon microcomb generation using laser self-injection locking
<p>This dataset contains data presented in the Figures of the paper "Platicon microcomb generation using laser self-injection locking"</p>
Data accompanying "Petabit per second data transmission using a chip-scale microcomb ring resonator source"
<p>Data for reproducing the figures from the article: <strong>Petabit per second data transmission using a chip-scale microcomb ring resonator source. </strong></p>
Chaotic microcomb inertia-free parallel ranging dataset and code
<p>Available data and code for manuscript: "Chaotic microcomb inertia-free parallel ranging"</p> <p>Arxiv version: https://arxiv.org/abs/2212.14275</p> <p>Execution tested with Matlab 2020b or newer on Windows. Unzip folder to access files.</p> <p>Matlab figures are stored in matlab_figures folder.</p> <p>For figure 2 execute feed_forward_tuning_analysis.m file<br> Change tuning rate (row 23) for appropriate values (25, 50, 100 Hz).<br> For figure 3 execute sequential_analysis_findpeaks.m and vipa_point_cloud.m files. Raw data are stored in raw_data folder.<br> <br> Contact anton.lukashchuk@epfl.ch if problems with matlab code arise. <br> All matlab code remains under copyright by the authors: Anton Lukashchuk. The code is provided solely to be used to reproduce the figures of the aforementioned paper.</p>
Generalised Kerr Microcomb Physics in Synchronously Driven Systems: Thesis Simulation Programs
<p>This depot inludes Matlab programs and functions for many of the figures and examples presented in the 2023 thesis of Miles H. Anderson from EPFL. Every script file is intended to be runable as is. The programs are tested with Matlab 2020b, and some of them make use of the Signal Processing package.</p> <p>A guide on the program structure is given in the Appendix chapter of the thesis, which accompanies the example programs found in the Appendix Demos folder.</p> <p>Each main folder corresponds to a chapter in the thesis.</p> <p>Some of the programs might contain errors and unexplained sections. Earnest inquiries about the programs might be answered by Miles at his email: miles.anderson@epfl.ch.</p> <p>Supervisor: Prof. Tobias J. Kippenberg, Laboratory of Photonic and Quantum Measurements (LPQM) at EPFL.</p>
Synthetic-reflection self-injection-locked microcombs
<p>Data and code used in the manuscript "Synthetic-reflection self-injection-locked microcombs".</p>
Raw data for: Active feedback stabilization of super-efficient microcombs in photonic molecules
<p>This dataset includes the raw data and Python scripts to plot the figures included in the paper "<span>Active feedback stabilization of super-efficient </span><span>microcombs in photonic molecules</span>".</p>
Ultralow-power chip-based soliton microcombs for photonic integration
<p>Available data for "Ultralow-power chip-based soliton microcombs for photonic integration" - author Junqiu Liu</p>
Electrically pumped photonic integrated soliton microcomb
<pre>The code and data used to produce the plots within the paper entitled "Electrically pumped photonic integrated soliton microcomb".</pre>
Data accompanying "Coherent optical communications using coherence-cloned Kerr soliton microcombs"
<p>This dataset contains measurement data and digital signal processing (DSP) code for the results presented in "Coherent optical communications using coherence-cloned Kerr soliton microcombs". </p> <p> The program code included in this dataset is distributed under a GPLv3 license.</p>
Photonic integrated soliton microcombs for X- and K-band microwave generation
<p>Available data for "Photonic integrated soliton microcombs for X- and K-band microwave generation"</p> <p>Old version: doi.org/10.5281/zenodo.3666737</p> <p>Updated version: doi.org/10.5281/zenodo.3755305</p>
Microcomb-synchronized optoelectronics
<p>Dataset for paper "A microcomb-synchronized optoelectronic system"</p>
Phase-stabilised self-injection-locked microcomb
<p>Data used in the manuscript "Phase-stabilised self-injection-locked microcomb".</p>
Reconfigurable radiofrequency filters based on versatile soliton microcombs
<p>New version</p> <p>Available data for "Reconfigurable radiofrequency filters based on versatile soliton microcombs"</p>
Raw data for integrated, ultra-compact high-Q silicon nitride microresonators for low-repetition-rate soliton microcombs
<p>This file includes the raw data for integrated, ultra-compact high-Q silicon nitride microresonators for low-repetition-rate soliton microcombs</p>
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