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283 results for “orbital data”
Nanoresolution real-time 3D orbital tracking for studying mitochondrial trafficking in vertebrate axons in vivo - Data Set 2
<p>The data set was analyzed in main figures 2, 3 and supplementary figure 5.</p>
Nanoresolution real-time 3D orbital tracking for studying mitochondrial trafficking in vertebrate axons in vivo - Data Set 1
<p>24.01.2014 fish 5 was analyzed in main figures 1,2 and supplementary figure 4</p> <p>21.03.2014 fish 1 was analyzed in main figures 2,3 and supplementary figure 4</p>
Data for Collision Induced Spin-Orbit Relaxation of Highly Vibrationally Excited NO Near 1 K
<p>Data for "<strong>Collision Induced Spin-Orbit Relaxation of Highly Vibrationally Excited NO Near 1 K" published in Natural Sciences</strong></p>
Data for "Different Martian Crustal Seismic Velocities across the Dichotomy Boundary from Multi-Orbiting Surface Waves"
<p>Data for "Different Martian Crustal Seismic Velocities across the Dichotomy Boundary from Multi-Orbiting Surface Waves"</p>
Data for CSJin et al., 2023, PNAS, " Tectonic and orbital forcing of the South Asian monsoon in central Tibet during the late Oligocene"
<p>This zip file contains data presented in the PNAS paper “Tectonic and orbital forcing of the South Asian monsoon in central Tibet during the late Oligocene” by Jin et al., 2023. There are 7 Excel files for Figure 2, 3, 4, S4, S11, S13 and S14 of the paper, respectively.</p>
Data underlying "Spin-Orbit Protection of Induced Superconductivity in Majorana Nanowires"
<p>This repository contains an extended dataset of raw data underlying <a href="https://doi.org/10.1103/PhysRevLett.122.187702">J.D.S Bommer <em>et al.</em>, Spin-Orbit Protection of Induced Superconductivity in Majorana Nanowires, Phys. Rev. Lett. <strong>122</strong>, 187702 (2019)</a>.</p> <p>It also contains python notebooks for recreating the plots in the paper, developed in 2022/23.</p>
Replication Data and Code for: Interplay of Hidden Orbital Order and Superconductivity in CeCoIn5
<p><br> Replication Data and Code for: Interplay of Hidden Orbital Order and Superconductivity in CeCoIn5</p>
Data set for Chemical bond analysis for the entire periodic table: Energy Decomposition and Natural Orbitals for Chemical Valence in the Four-Component Relativistic Framework
<p>Data related with the publication :Chemical bond analysis for the entire periodic table:<br> Energy Decomposition and Natural Orbitals for Chemical Valence in the Four-Component Relativistic Framework by Diego Sorbelli, Paola Belanzoni, Loriano Storchi, Olivia Bizzarri, Beatrice Bizzarri, Edoardo Mosconi and Leonardo Belpassi</p> <p>Input and data for:</p> <p>Tab.1 --> data in dir "w_dimer_AVDZ" and in dir "ADF/w_dimer".</p> <p>Tab.2 --> data in dir "Agalkyne" and in dir "ADF/Agalkyne"</p> <p>Tab.3 --> data in dir "TMC05ethene"<br> </p>
Data from The Kinematics, Metallicities, and Orbits of Six Recently Discovered Galactic Star Clusters with Magellan/M2FS Spectroscopy
<p>Pace, Koposov, Walker et al 2023</p> <p>Catalog level data products from Magellan/M2FS and AAT/AAOmega spectroscopy (fits, npy formats) including membership information</p> <p>Summary table (Table 2) in machine readable formats (npy, fits, and csv formats)</p> <p>Updates (v2): The original M2FS sample had a bug in the application of the systematic errors. All errors have been corrected. The summary table has been updated accordingly. </p>
Data for 'Complete reversal of the atomic unquenched orbital moment by a single electron'
<p>This folder contains all the raw data needed to generate the figures in the paper '<em>Complete reversal of the atomic unquenched orbital moment by a single electron</em>.'</p> <p><strong>Contents: </strong></p> <p><em>Figure 1 </em></p> <p>(a) STM topography 'Fig1Topography.sxm'<br> (b) and (c) DFT calculations, reproduced with 'public_sis2.pw.in' and the Quantum ESPRESSO package.</p> <p><em>Figure 2 </em></p> <p>(a) Energy levels (in meV) for the spin-orbit Hamiltonian, reproduced using 'Fig2spectra_SM'; multiplet calculations from the point-charge model found in 'Fig2spectra_PCM.' <br> Please note that .out files can be opened with any text editor (e.g. such as TextEdit), and .tar files can be unpacked with any open-source file archiver (e.g. such as 7-zip).<br> (b) dI/dV spectra atop Fe atom and bare Cu2N: 'Fig2Spec_MonomerFullRange' and 'Fig2Spec_CuNFullRange'</p> <p><br> <em>Figure 3</em></p> <p>(a) and (b) field dependence of the spin excitation, with data files 'SJ30_001-036', for 0-4T. Field values indicated in data files.<br> (c) 1T-5T data of orbital excitation, in order of increasing field: 'Fig4Spec_1T', 'Fig4Spec_2T', 'Fig4Spec_3T', 'Fig4Spec_4T', 'Fig4Spec_5T.' PCM transport calculations also provided. <br> (d) Zeeman splitting data in 'ShiftwField'</p> <p><em>Figure 4</em></p> <p>(a) and (b) current sweeps, with data files 'S_J31_016-032'. Current values indicated in data files.<br> (c) Measured data 'Fig4MonomerSpectrum.' Point-charge transport calculations in 'PCMTransport.' Spin-orbit transport calculations in 'SOTransport.'<br> (d) Point-charge calculations in 'Occupations', first column is the Bias (mv), second column is the occupation of the ground state, and third column is occupation of the first excited state.</p>
Data from: Geometry of wave-formed orbital ripples in coarse sand
Using new large-scale wave-flume experiments we examine the cross-section and planform geometry of wave-formed ripples in coarse sand (median grain size D50 = 430 μm) under high-energy shoaling and plunging random waves. We find that the ripples remain orbital for the full range of encountered conditions, even for wave forcing when in finer sand the ripple length λr is known to become independent of the near-bed orbital diameter ds (anorbital ripples). The proportionality between λr and ds is not constant, but decreases from about 0.55 for ds / D50 ≈ 1400 to about 0.27 for ds / D50 ≈ 11 , 500 . Analogously, ripple height ηr increases with ds, but the constant of proportionally decreases from about 0.08 for ds / D50 ≈ 1400 to about 0.02 for ds / D50 > 8000 . In contrast to earlier observations of coarse-grained two-dimensional wave ripples under mild wave conditions, the ripple planform changes with the wave Reynolds number from quasi two-dimensional vortex ripples, through oval mounds with ripples attached from different directions, to strongly subdued hummocky-type features. Finally, we combine our data with existing mild-wave coarse-grain ripple data to develop new equilibrium predictors for ripple length, height and steepness suitable for a wide range of wave conditions and a D50 larger than about 300 μm.
Data for "Richardson model with complex level structure and spin-orbit coupling for hybrid superconducting islands: Stepwise suppression of pairing and magnetic pinning"
Open the record for dataset details and reuse information.
Visualizing sub-atomic orbital and spin moments using a scanning transmission electron microscope: Data and Methodology
Open the record for dataset details and reuse information.
Data for: Orbital-resolved visualization of single-molecule photocurrent channels
<p>Data for: Orbital-resolved visualization of single-molecule photocurrent channels</p>
Raw Data for "Automated Bonding Analysis with Crystal Orbital Hamilton Populations"
<p>Raw data corresponding to the following paper: 10.1002/cplu.202200123</p>
Functional and ecomorphological evolution of orbit shape in Mesozoic archosaurs is driven by body size and diet: Geometric morphometric data, 3D models (stl files), FEA models (Hypermesh, Abaqus files)
<p class="MsoNormal">The orbit is one of several skull openings in the archosauromorph skull. Intuitively, it could be assumed that orbit shape would closely approximate the shape and size of the eyeball resulting in a predominantly circular morphology. However, a quantification of orbit shape across Archosauromorpha using a geometric morphometric approach demonstrates a large morphological diversity despite the fact that the majority of species retained a circular orbit. This morphological diversity is nearly exclusively driven by large (skull length > 1000 mm) and carnivorous species in all studied archosauromorph groups, but particularly prominently in theropod dinosaurs. While circular orbit shapes are retained in most herbivores and smaller species, as well as in juveniles and early ontogenetic stages, large carnivores adopted elliptical and keyhole-shaped orbits. Biomechanical modeling using finite element analysis reveals that these morphologies are beneficial in mitigating and dissipating feeding-induced stresses without additional reinforcement of the bony structure of the skull.</p>
Data for publication "Probing magnetic orbitals and Berry curvature with circular dichroism in resonant inelastic X-ray scattering"
<p>- plotting scripts for the RIXS spectra presented in the paper</p> <p>- analysis scripts for circular dichroism as function of the electric field</p> <p>- all spectra in HDF5 format</p>
Nanoresolution real-time 3D orbital tracking for studying mitochondrial trafficking in vertebrate axons in vivo - Data Set 5
<p>Supplementary videos including raw data</p>
Nanoresolution real-time 3D orbital tracking for studying mitochondrial trafficking in vertebrate axons in vivo - Data Set 4
<p>The data set was analyzed in supplementary figure 3.</p>
Nanoresolution real-time 3D orbital tracking for studying mitochondrial trafficking in vertebrate axons in vivo - Data Set 3
<p>The data set was analyzed in supplementary figure 2.</p>
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.