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1,445 results for “Irradiance”
data and code for Machine Learning-based Denoising of Surface Solar Irradiance simulated with Monte Carlo Ray Tracing
<p>Data and radiative transfer code used for the manuscript "Machine Learning-based Denoising of Surface Solar Irradiance simulated with Monte Carlo Ray Tracing". See Readme for details</p>
Global horizontal irradiance from WRF-Solar and NSRDB over CONUS
<p>This dataset has been used in the publication: Jimenez, P.A., J. Yang, J.-H. Kim, M. Sengupta, and J. Dudhia: Assessing the WRF-Solar model performance using satellite-derived irradiance from the National Solar Radiation Database. J. Applied Met. & Climatol., 61, 129-142.</p> <p>The article presents the reference WRF-Solar configuration and describes the value of shortwave irradiance retrievals from the National Solar Radiation Database (NSRDB) to improve the WRF-Solar performance. The dataset consist of global horizontal irradiance from several WRF-Solar simulations over the contiguous U.S. spanning the year of 2018, and collocated satellite retrievals for the same year.</p> <p>The dataset will help to:</p> <ol> <li>Ensure reproducibility of results in the article above</li> <li>Provide a reference WRF-Solar simulation and adequate observations over an extended period to continue improving the WRF-Solar performance</li> </ol>
Data and code for: Photoacclimation dynamics in coral holobionts responding to thermal and irradiance changes correlate with photon pressure per symbiont
<p>Code and data used in the publication "Photoacclimation dynamics in coral holobionts responding to thermal and irradiance changes correlate with photon pressure per symbiont". For queries about this dataset please email robert.mason1@uq.net.au</p>
Abdoul-Carime, H., Lathuilière, B., Nédelec, P. Kopyra, J., (2023), Irradiation of benzonitrile-water films by electrons experiments
<p>Dataset from experiments on electron irradiation of benzonitrile-water films</p>
Irradiation of benzonitrile-water films by electrons
<p>Experiments on electron irradiation of benzonitrile-water films</p>
Self-ion irradiation effects on nanoindentation-induced plasticity of crystalline iron: A joint experimental and computational study
<p>Set consists two folders named after the methods used to obtained the data i.e. Nanoindentation, EBSD.</p> <p><strong>→ EBSD</strong></p> <p>In EBSD folder there are 3 original image files that make up Figure 1 and Figure 3a and 3b in the paper. Below please find the description:</p> <p><em>Fig. 1</em><em>. EBSD IPF Z image of the pristine Fe sample.</em></p> <p><em>Fig. 3</em><em>. (a) EBSD map of the indentation array made within one grain with [101] orientation, (b) GND density of map of the indentation array</em></p> <p><strong>→ Nanoindentation</strong></p> <p>In Nanoindentation folder there are two folders dedicated to two different materials (pristine and ion irradiated). The name of .txt files is as follows:</p> <p>Pure_Fe_300C_5MeV_1,5mN_100x1-107131929</p> <p>where:</p> <p>Pure_Fe_300C_5MeV -> Name of the sample,</p> <p>1,5mN -> Load</p> <p>100 -> Number of repetitions</p> <p>x1 -> Number of LD curves</p> <p> </p>
Influence of ion irradiation on the nanomechanical properties of thin alumina coatings deposited on 316L SS by PLD
<p>Set consists three folders named after the methods used to obtained the data i.e. Nanoindentation, XRD and SEM.</p> <p><strong>→ SEM </strong></p> <p>In SEM folder there are 4 original image files that make up Figure 2 in the paper. Below please find the description:</p> <p><em>Fig. 2. SEM images of: (a) etched 316L SS surface; as-deposited PLD-grown Al2O3 coating on 316L SS: (b) cross-section, (c) surface; (d) surface of PLD-grown Al2O3 coating after ion irradiation (50 dpa).</em></p> <p><strong>→ XRD</strong></p> <p>In XRD folder there are two .txt files that makes up the Fig. 3 in the paper. In each of them there are two columns, where 1<sup>st</sup> is 2θ (°) and 2<sup>nd</sup> is Intensity (counts per second). Based on the filenames, they are clearly identifiable.</p> <p><strong>→ Nanoindentation</strong></p> <p>In Nanoindentation folder there are two folders dedicated to two different materials (coating and substrate steel). In each of these folders there are subfolders indicating data for the particular material state (level of dpa). To each unique combination of the material, state and nanoindentation force there are two .txt files assigned. First is named ‘LD [material] [dpa][force].txt’ and contains Load-displacement data. In such a file there are two columns, where 1<sup>st</sup> is force (mN) and 2<sup>nd</sup> is displacement (nm). Single curves are arranged one under another (separated with two empty rows). Second file is named ‘AR [material] [dpa][force].txt’ and contains aggregate data. For reproducing the calculations given in the paper, first seven columns from the file are needed:</p> <p>1<sup>st</sup> – measurement No</p> <p>3<sup>rd</sup> - Maximum indentation depth h(max) (nm)</p> <p>4<sup>th</sup> - Indenter contact depth at F(max) h(c) (nm)</p> <p>5<sup>th</sup> – Maximum force (mN)</p> <p>6<sup>th</sup> - Indentation hardness H(IT) (GPa)</p> <p>7<sup>th</sup> – Reduced modulus E (GPa)</p>
High versus low energy ion irradiation impact on functional properties of PLD-grown alumina coatings
<p>Set consists two folders named after the methods used to obtained the data i.e. Nanoindentation and SEM.</p> <p><strong>→ SEM </strong></p> <p>In SEM folder there are 3 original image files that make up Figure 3 in the paper. Based on the filenames, they are clearly identifiable.</p> <p><strong>→ Nanoindentation</strong></p> <p>To each material state (dpa level) and energy (high – HE or low - LE) there is one .txt file assigned. Each file is named ‘[HE/LE] [dpa level] L-D.txt’ and contains Load-displacement data. In such a file there are two columns, where 1<sup>st</sup> is displacement (nm) and 2<sup>nd</sup> is force (mN). Single curves are arranged one under another (separated with two empty rows). The curves where used to make up Figure 5.</p>
Supporting online material for Irradiation induced mineral changes of NWA10580 meteorite, Gyollai I. et al. 2024
<p>Online supporting material for the upcoming publication titled<span> Irradiation induced mineral changes of NWA10580 meteorite determined by infrared analysis by I. Gyollai et al. </span></p>
Ar+ and N+ ion irradiated Co/Pt and Pt/Co bilayered stacks
<p><span>This dataset comprises X-ray diffraction (XRD), secondary ion mass spectrometry (SIMS), and vibrating sample magnetometry (VSM) data obtained from the study of thin-film structures. The films are composed of cobalt (Co) and platinum (Pt) layers with configurations Co(10 nm)/Pt(10 nm)/substrate and Pt(10 nm)/Co(10 nm)/substrate. Both types of films were fabricated by magnetron sputtering deposition </span><span>at room temperature onto Si(001)/SiO<sub>2</sub></span><span> substrates. </span></p> <p><span>The as-deposited samples were subjected to N<sup>+</sup> and Ar<sup>+</sup> ion irradiation using a BALZERS MPB 202 ion implanter system with the ion energy of 110 keV and ion dose 1 × 10<sup>15</sup> ions/cm<sup>2</sup>. The irradiated stacks were post-annealed in vacuum of 10<sup>−6</sup> mbar at 550°</span><span>С</span><span> for 30 min and investigated along with non-irradiated samples after same single-stage thermal treatment. </span></p> <p><span>The XRD data, obtained using a Rigaku Ultima IV diffractometer </span><span>(CuK</span><span>α</span><span> radiation)</span><span>, provides information on the crystal structure of the films. SIMS data, acquired with an Ion ToF IV device, reveals depth profiles and elemental composition, while the magnetic properties of the films were characterized using a vibrating sample magnetometer (VSM).</span></p>
CTLA-4 and PD-1 expressed in EMT6 mouse mammary carcinoma cell line acquired radio-resistance to gamma-ray irradiation.
<p>Supplementary File of manuscript entitled CTLA-4 and PD-1 expressed in EMT6 mouse mammary carcinoma cell line acquired radio-resistance to gamma-ray irradiation.</p>
DFT raw data for "Investigations on electron beam irradiated rare-earth doped SrF2 for application as low fading dosimeter material: Evidence for and DFT simulation of a radiation-induced phase"
<p>This is the DFT data for "<a href="https://pubs.rsc.org/en/content/articlehtml/2022/tc/d2tc01773c">Investigations on electron beam irradiated rare-earth doped SrF2 for application as low fading dosimeter material: Evidence for and DFT simulation of a radiation-induced phase</a>" https://doi.org/10.1039/D2TC01773C . </p> <p>It includes all predicted structures, the structure optimizations and the phonon computations in VASP format. Phonon computations were performed with the finite displacement method.</p>
Combining observations and simulations to investigate the small-scale variability of surface solar irradiance under continental cumulus clouds
<p><a href="10948326" target="_blank" rel="noopener noreferrer">He_ACP_2024_data.tar.gz</a> : Data and scripts associated with the article "Combining observations and simulations to investigate the small-scale variability of surface solar irradiance under continental cumulus clouds"</p> <p><a href="10948326" target="_blank" rel="noopener noreferrer">star-engine-htrdr-0.8.1.tar</a> : Monte Carlo radiative transfer source code that was used for the paper</p>
High resolution crystallographic and chemical characterisation of iodine induced stress corrosion crack tips formed in irradiated and non-irradiated zirconium alloys - Supporting data
<p>Data related to High resolution crystallographic and chemical characterisation of iodine induced stress corrosion crack tips formed in irradiated and non-irradiated zirconium alloys:</p> <p>Conor Gillen, Alistair Garner, Pia Tejland, Philipp Frankel,<br> High resolution crystallographic and chemical characterisation of iodine induced stress corrosion crack tips formed in irradiated and non-irradiated zirconium alloys, Journal of Nuclear Materials, Volume 519, 2019, Pages 166-172, ISSN 0022-3115,<br> https://doi.org/10.1016/j.jnucmat.2019.03.027.</p> <p>Datafiles for STEM-EDX analysis - STEM-EDX.zip</p> <p>Datafiles for TKD analysis - TKD.zip</p> <p>Datafiles for NanoSIMS analysis - 1: NanoSIMS raw data file (.im file) with all 160 planes and data for all ion signals acquired. Can be opened with the OpenMIMS plugin for ImageJ or other NanoSIMS software. 2: NanoSIMS processed data file (.nrrd file) which is drift corrected and can be opened with the OpenMIMS plugin for ImageJ</p>
Total Solar Irradiance (TSI) in the satellite era: Multiple new or updated satellite TSI composites and related time series
<h2>Supporting dataset to accompany R. Connolly et al. (2024)</h2> <h3><strong>Associated journal article:</strong></h3> <div>R. Connolly, W. Soon, M. Connolly, R.G. Cionco, A.G. Elias, G.W. Henry, N. Scafetta, and V.M. Velasco Herrera (2024). Multiple new or updated satellite Total Solar Irradiance (TSI) composites (1978-2023). The Astrophysical Journal. <strong>975 </strong>(1), 102. <a href="https://doi.org/10.3847/1538-4357/ad7794">https://doi.org/10.3847/1538-4357/ad7794</a></div> <div> </div> <h3><strong>Description of contents</strong>:</h3> <div>An Excel spreadsheet with 25 tabs. All of the TSI composite time series, the proxy-based models used for comparison, and the data used to generate the figures and tables are provided in this sheet. The first tab describes the contents of the remaining tabs.</div> <div> </div> <h3><strong>System requirements</strong>:</h3> <div>MS Excel or another program that can read .xlsx files.</div> <div> </div> <h3><strong>Additional comments</strong>:</h3> <div>Version 1.0 is a mirror archive of the original Supporting Data for the journal article described above. Updates to this dataset will be provided here at <a href="https://doi.org/10.5281/zenodo.13619470">https://doi.org/10.5281/zenodo.13619470</a> or on the CERES-Science website at <a href="https://www.ceres-science.com/portfolio-collections/solar-activity/total-solar-irradiance-in-the-satellite-era">https://www.ceres-science.com/portfolio-collections/solar-activity/total-solar-irradiance-in-the-satellite-era</a>. </div> <div> </div> <h3><strong>Citation request</strong>:</h3> <div>We ask that users of this dataset include an appropriate citation to the R. Connolly et al. (2024, The Astrophysical Journal) article in any publications that make use of the dataset. If possible, we encourage including a direct citation to this dataset as well as to the article. We recommend including the version number and/or download date if you are using an update from the original dataset.</div> <div> </div> <div>=====</div>
PFAS degradation under UV irradiation
<p>Negative mode LC-ESI-MS/MS analysis of PFAS containing samples acquired in non-targeted DDA mode. Screening for degradation products of PFAS upon UV irradiation.</p>
Fig. 3 in High irradiation and increased temperature induce different strategies for competent photosynthesis in young and mature fig leaves
Fig. 3. Relative abundances of Rubisco LSU in mature (ML) and young (YL) leaves of common fig. Relative abundances were measured in the morning (PPFD = 150 ± 20 μmol m −2 s −1; T = 17 ± 1 ̊C) and at midday (PPFD = 1300 ± 100 μmol m −2 s −1; T = 35 ± 2 ̊C). Vertical bars represent mean values ± SD. Values are displayed as % relative to values measured in the morning in ML (100%).
Fig. 4 in High irradiation and increased temperature induce different strategies for competent photosynthesis in young and mature fig leaves
Fig. 4. Changes in concentration of TBARS (μmol g −1 FW, a) and specific activities of superoxide dismutase (SOD; U mg −1 proteins, b), catalase (CAT; ΔA min−1 mg −1 protein, c) and ascorbate peroxidase (APX; ΔA min−1 mg−1 protein, d) and guaiacol peroxidase (GPOX; ΔA min−1 mg−1 protein, e) in mature (ML) and young (YL) common, fig (Ficus carica L.) leaves measured in the morning (PPFD = 150 ± 20 μmol m −2 s −1; T = 17 ± 1 ̊C) and at midday (PPFD = 1300 ± 100 μmol m −2 s −1; T = 35 ± 2 ̊C). Vertical bars represent mean values ± SD. The vertical bars with different lower-case letters are significantly different from each other at p <0.05 according to Fisher's least significant difference (LSD) test.
Spectral data associated to the publication: "VIS spectroscopy of NaCl - water ice mixtures irradiated with 1 and 5 keV electrons under Europa's conditions: Formation of colour centres and Na colloids " by R. Cerubini et al. (Icarus 379, 2022)
<p>This is the complete set of experimental VIS reflectance data collected by R. Cerubini and co-authors for the article "VIS spectroscopy of NaCl - water ice mixtures irradiated with 1 and 5 keV electrons under Europa's conditions: Formation of colour centres and Na colloids" published in Icarus 379 (2022). doi: https://doi.org/10.1016/j.icarus.2022.114977.</p> <p>The article itself is published in open-access and provides the methodology for the spectral aquisitions, discussion of the errors and uncertainties, analysis of the spectra and implications for the composition of Solar System surfaces.</p> <p>The data are contained in ASCII files (columns separated by comma). The first column is the wavelength (in micrometers) and the other columns contain the reflectance data (in unit of reflectance factor). The different compositions are indicated in the filenames and correspond directly to the figures in the published paper.</p> <p> </p>
Mechanical behavior of ion-irradiated ODS RAF steels strengthened with different types of refractory oxides
<p>The data is arranged into 4 folders:<br> 1. GIXRD folder, which contains Grazing Incidence X-ray diffraction experiments raw data<br> 2. Nanoindentation folder, where one may find the raw data of load-depth nanoindentation experiments. In the folder data is arranged in 4 subfolders referring separately to each material (A4N-alumina-ODS; Y2N-yttria-ODS, Z3N-zirconia ODS and R2N-non-ODS). In each sub-folder, you can find data sorted by sample condition (virgin or irradiated with different doses). In each of these folders datasets are organized referring to applied maximum load.<br> 3. SEM/EBSD and STEM contains scanning electron microscopy images of materials.<br> 4. TEM contains transmission microscopic images<br> In addition, the file "Density.xlsx" (separated from above-mentioned folders), contains density measurements of the produced materials.<br> Details of all of the above experiments are presented in the reference article.</p>
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Allen Brain Atlas
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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.