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Dataset results
509 results for “Photons”
Microwave-to-optical conversion with a gallium phosphide photonic crystal cavity
<p>Electrically actuated optomechanical resonators provide a route to quantum-coherent, bidirectional conversion of microwave and optical photons. Such devices could enable optical interconnection of quantum computers based on qubits operating at microwave frequencies. Here we present a platform for microwave-to-optical conversion comprising a photonic crystal cavity made of single-crystal, piezoelectric gallium phosphide integrated on prefabricated niobium circuits on an intrinsic silicon substrate. The devices exploit spatially extended, sideband-resolved mechanical breathing modes at ~3.2 GHz, with vacuum optomechanical coupling rates of up to g<sub>0</sub>/2π ≈ 300 kHz. The mechanical modes are driven by integrated microwave electrodes via the inverse piezoelectric effect. We estimate that the system could achieve an electromechanical coupling rate to a superconducting transmon qubit of ~200 kHz. Our work represents a decisive step towards integration of piezoelectro-optomechanical interfaces with superconducting quantum processors.</p>
3D printed photonics devices
<p>This data contains the 1-D intensity measurements in xls and pdf file formats along with the device images</p>
Photon-emission statistics induced by electron tunnelling in plasmonic nanojunctions
<p>OPEN DATA related to the research publication:</p> <p>R. Avriller, Q. Schaeverbeke, T. Frederiksen, and F. Pistolesi<br> <em>Photon-emission statistics induced by electron tunnelling in plasmonic nanojunctions</em><br> Phys. Rev. B <strong>104</strong>, L241403 (2021) [arXiv:2107.07860]</p>
Simulated X-ray Photon Fluctuation Spectroscopy Dataset
<p>Dataset for simulated X-ray Photon Fluctuation Spectroscopy (XPFS) detector images and photon maps. XPFS is a X-ray speckle imaging technique used at SLAC National Accelerator Laboratory to study ultrafast materials dynamics. </p>
Reproduction package for the publication 'Galaxy cluster photons alter the ionisation state of the nearby warm-hot intergalactic medium'
<p>The following files can be used to reproduce the figures and data from the paper <strong>Galaxy cluster photons alter the ionisation state of the nearby warm-hot intergalactic medium</strong><strong> </strong>by L. Štofanová, A. Simionescu, N. A. Wijers, J. Schaye, and J. Kaastra to be accepted in Monthly Notices of the Royal Astronomical Society (MNRAS).</p>
Data supporting 3D Super-resolution Optical Fluctuation Imaging with Temporal Focusing with two-photon excitation
<p>Data to support the publication combining temporal focusing two photon excitation with super-resolution optical fluctuation imaging.</p> <div>This research was funded by National Centre of Science, grant number: 2022/47/B/ST7/03465. For the purpose of Open Access, the author has applied a</div> <div>CC-BY public copyright licence to any author Accepted Manuscript (AAM) version arising from this submission</div>
Two-time correlation function based on speckle patterns from x-ray photon correlation spectroscopy associated with "Intermittent cluster dynamics and temporal fractional diffusion in a bulk metallic glass" (scientific article published in Nature Communications, 2024)
<p>This dataset consists of contrast data, i.e., the two-time correlation function, based on speckle patterns measured at the at the 8ID-E beamline of the Advanced Photon Source at Argonne National Laboratory.</p> <p>Experimental details are stated in the paper specified under "related work" and in the accompanying supplementary information.</p> <p>You are welcome to use this dataset in compliance with the CC BY 4.0 licence assigned to this dataset.</p> <p>Any questions regarding the data can be addressed to birte.riechers@bam.de who would also appreciate a note if you find the data useful.</p> <p>____________________________________________________________________</p> <p>The data consists of 32 text files in total, which correspond to the main and lower panel Figure 2 of the main publication. </p> <p>30 of these text files are contrast data, which are named "contrast_DT250s_nn.text" wiith "nn" as the identifier of consecutive data sets going from 1 to 30. Each data set consists of p rows and q columns, DT250s denotes the time resolution of data points, which is 250 s along both row and column values.</p> <p>The data set called "Time_Contrast_1to30s.txt" states the start time in seconds of the first data point of each of the thirty contrast data set.</p> <p>The data set called "ScatteredIntensity.txt" states the scattered intensity at full time resolution, i.e. 2.5 s.</p> <p>The files are plain text files with the data points separated by "space" along rows and "new line" along columns.</p>
New limit on dark photon dark matter from searches using LIGO O1 data.
<p>The three files contain the three limits in Fig.4 of the published paper.</p> <p>For each file, there are 2 columns of data, with the first column being the frequency in Hz and the second column the</p> <p>corresponding upper limit on the dimensionless dark photon squared coupling.</p> <p>limit_red.txt: the red line, O1 95% CL limits (1800s SFTs) </p> <p>limit_blue.txt: the blue line, average optimal O1 limits (893 hours)</p> <p>limit_yellow.txt: the yellow line, Nominal SNR O1 95% CL limits</p>
Photonics Actors Database
<p>The data are collected from the European countries in which the partners of the EPRISE project are based, and predominantly includes photonics Academia, Clusters and Companies who are active in the four EPRISE project target markets: agriculture, food, medical technologies and pharmaceuticals.</p> <p>The list is not intended to be exhaustive, while it is continuously updated by the project consortium.</p>
Example Photon raytracing openPMD data
<p>This is an example datafile in hdf (h5) format, complying to the openPMD domain extension for photon raytracing simulations, as defined in: https://github.com/PaNOSC-ViNYL/openPMD-standard/blob/latest/EXT_PRAYTRACE.md . The dataset was created with the provided script generate_data.py and presents an example output file.</p> <p>This dataset is part of the Deliverable D5.1 in Workpackage 5 (Virtual Neutron and X-ray Laboratory) of the Photon and Neutron Open Science Cloud (PaNOSC).</p> <p>This project has received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No. 823852.</p>
Supplementary dataset: Phoamtonic designs yield sizeable 3D photonic band gaps
<p>Supplementary Dataset of the publication "<a href="http://www.pnas.org/content/116/47/23480">Phoamtonic designs yield sizeable 3D photonic band gaps</a>" by the same authors:</p> <p>M. A. Klatt, P. J. Steinhardt, S. Torquato. <em>Proc. Natl. Acad. Sci. U.S.A.</em> <strong>116</strong>:23480–23486 (2019)<br> <a href="https://doi.org/10.1073/pnas.1912730116">https://doi.org/10.1073/pnas.1912730116</a></p> <p>Database S1 "Gap maps": Raw data of the gap maps listing the gap--mid-gap ratios together with the corresponding rod radii, volume fractions, or dilectric contrast.</p> <p>Database S2 "Configurations": All triply-periodic nets and networks analyzed in this study. The readme file explains the file formats.</p> <p>Database S3 "Parameters and Data": All parameters for the photonic calculations, raw output and post-processed data sets.</p>
Photon absorption in direct bandgap semiconductor
<p>Video illustrating a photon absorption process in a direct bandgap semicondutor. The video has been created using Blender 2.81. The source file is also attached.</p>
Photon absorption in an indirect bandgap semiconductor
<p>The video illustrates the photon absorption process in an indirect bandgap semiconductor. The process is assisted by a phonon (blue ball) that provides the necessary crystal momentum. The video has been done using blender 2.81. The source file is also provided so you can edit the colors, reproduce the video from different camera angles, etc...if you wish. </p>
Photonic crystals with rainbow colors by centrifugation-assisted assembly of colloidal lignin nanoparticles
<p>Source data (CSV files) associated with the publication titled <strong>Photonic crystals with rainbow colors by </strong><strong>centrifugation-assisted assembly </strong><strong>of colloidal lignin nanoparticles</strong>.</p>
Data for 2D Signal Estimation for Sparse Distributed Target Photon Counting Data
<p>Data used in publication of 2D Signal Estimation for Sparse Distributed Target Photon Counting Data</p> <p>Data provided consists of:</p> <p>raw and PTV processed MicroPulse DIAL (MPD) data (10.26023/MX0D-Z722-M406)</p> <p>simulated photon counting data and the processed results</p> <p> </p>
CLIC Calorimeter 3D images: Photon showers at Fixed Angle
<p>Energy deposits from single-particle showers in the ECAL+HCAL calorimeters of the CLIC detector</p> <p>Simulation performed with GEANT4 (https://geant4.web.cern.ch) and DD4HEP software (https://dd4hep.web.cern.ch/dd4hep/)</p> <p>Photons entering the detector at variable energy and fixed direction (perpendicular to the ECAL inner surface)</p> <p>See https://arxiv.org/abs/1912.06794 for details</p>
Data of "Accurate photonic temporal mode analysis with reduced resources"
<p>Data published in "<em>Accurate photonic temporal mode analysis with reduced resources</em>".</p> <p>Phys. Rev. A <strong>101</strong>, 013801</p>
Data of "Deterministic Shaping and Reshaping of Single-Photon Temporal Wave Functions"
<p>Data published in "<em>Deterministic Shaping and Reshaping of Single-Photon Temporal Wave Functions</em>".</p> <p>Phys. Rev. Lett. <strong>123</strong>, 133602</p>
Data of "Single-Photon Distillation via a Photonic Parity Measurement Using Cavity QED"
<p>Data published in "<em>Single-Photon Distillation via a Photonic Parity Measurement Using Cavity QED</em>"</p> <p>Phys. Rev. Lett. <strong>122</strong>, 133603</p>
Enhanced Molecular Spin-Photon Coupling at Superconducting Nanoconstrictions. Open data sets
<p>Includes data relevant for publication with DOI <a href="https://doi.org/10.1021/acsnano.0c03167">10.1021/acsnano.0c03167</a> plus a table with information on how the data were obtained and processed.</p>
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.