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  • 1
    Publication Date: 2023-01-13
    Description: In the absence of a complete profile through fast-spreading modern oceanic crust, we established a reference profile through the paleo crust of the Samail Ophiolite (Sultanate of Oman), which is regarded as the best analogue for fast-spreading oceanic crust on land. To establish a coherent data set, we sampled hard rocks in the Wadi Gideah in the Wadi-Tayin massif from the mantle section up to the sheeted dikes. This paper reports our studies of the lower crust, a 5 km thick pile of gabbros, focusing on petrographic features and on the results of mineral analyses. We collected petrographical data from thins sections of the samples by optical microscope and performed also EPMA analyses (Electron Probe Microanalysis) of the mineral phases of the rocks. The samples have been collected during field campaigns from 2010 to 2015, and the data have been collected in a period from 2013 to 2021.
    Keywords: Electronprobe Microanalysis; Fast-spreading oceanic crust; gabbro; Mineral Analyses; Oman Ophiolite; Petrographic Data; Samail Ophiolite
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 2
    Publication Date: 2023-02-08
    Description: As largest and best-exposed paleo-fast-spread oceanic crust on land, the Samail ophiolite in the Sultanate of Oman represents an ideal natural laboratory for investigating processes at fast-spreading mid-ocean ridges. We studied two layered gabbro sequences from different stratigraphic depths: one from the middle of the plutonic crust showing dm-scale modal layering with olivine abundance gradually decreasing from layer base to top (Wadi Somerah, Sumail block) and one located near the crust-mantle boundary showing mm-scale layers being enriched in olivine (Wadi Wariyah, Wadi Tayin block). Petrographic analyses were performed at the Institut für Mineralogie (Leibniz Universität Hannover, Germany) for thin-section description. Plagioclase and Clinopyroxene are present in all samples, most of the samples also include olivine as primary phase and are therefore described as olivine gabbro. The olivine content increases per layer towards the layer base. Grain sizes of the three primary phases olivine, plagioclase and clinopyroxene vary between 0.2 and 5 mm. Olivine usually forms the largest grains, plagioclase the smallest ones. The grain shapes are generally subhedral, their habit is prismatic or, occasionally, irregular or elongated. Some olivine grains show reaction rims or contain plagioclase chadacrysts. Poikilitic clinopyroxene also containing plagioclase as chadacrysts is very common. The described phases are only the primary minerals not taking the low to medium degree of alteration and therefore presence of secondary phases into account.
    Keywords: DEPTH, sediment/rock; Drilling/coring; Elevation of event; Event label; Feature; Formation of Layered Gabbros; Grain size, mean; Habit; Latitude of event; Layer number; Longitude of event; Lower Oceanic Crust; Main Lithology; Mode, area; Mode, grain size, description; OM10-Sam; OM10-War; Oman; Oman Ophiolite; Polarisation microscopy (Leica Leitz DMRP); Sample code/label; Shape; Wadi Somerah, Sumail block; Wadi Wariyah, Wadi Tayin block
    Type: Dataset
    Format: text/tab-separated-values, 746 data points
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  • 3
    Publication Date: 2023-02-12
    Keywords: According to Gillis et al. (2014); Amphibole, altered; Amphibole, habit; Amphibole, primary original; Amphibole, shape; Clinopyroxene, altered; Clinopyroxene, grain size; Clinopyroxene, habit; Clinopyroxene, modal; Clinopyroxene, shape; Comment; Depth above Mohorovicic discontinuity; Electronprobe Microanalysis; Event label; Fast-spreading oceanic crust; gabbro; Grain size description; HAND; Iron-titanium oxides, habit; Iron-titanium oxides, shape; Latitude of event; Longitude of event; Mineral Analyses; Minerals, total alteration; Minerals, total modal primary; Olivine, altered; Olivine, grain size; Olivine, habit; Olivine, modal; Olivine, shape; OM10-A02; OM10-A03; OM10-A04; OM10-A05A; OM10-A05B; OM10-A06; OM10-A10; OM10-A11; OM10-A11-1a; OM10-A11-1b; OM10-A11-1c; OM10-A11-1d; OM10-A11-1e; OM10-A11-1f; OM10-A11-1i; OM10-A11-1j; OM10-A11-1l; OM10-A11-1m; OM10-A11-1n; OM10-A11-1o; OM10-A11-1p; OM10-A11-1q; OM10-A11-1r; OM10-A11-1s; OM10-A11-1t; OM10-A11-1u; OM10-A11-1v; OM10-A11-1w; OM10-A11-1x; OM10-A11-2; OM10-A11-3; OM10-A12-1A; OM10-A12-1B; OM10-A12-1C; OM10-A12-1D; OM10-A12-2A; OM10-A12-2B; OM10-A12-2C; OM10-A12-2D; OM10-A12-3; OM10-A13; OM10-A14; OM10-A14A; OM10-A14b; OM10-A15; OM10-A16; OM10-A17; OM10-A17-1; OM10-A17-2; OM10-A17-3A; OM10-A17-3B; OM10-A17-3C; OM10-A18; OM10-A18-1; OM10-A18-2a; OM10-A18-2B; OM10-A18-2C; OM10-A19; OM10-A20; OM10-A20A; OM10-A20B; OM10-A21; OM10-A22; OM10-A23; OM10-A23B; OM10-A24; OM10-A25; OM10-A25-1A; OM10-A25-1B; OM10-A25-1D; OM10-A25-1E; OM10-A26; OM10-A26-1; OM10-A27; OM10-A28; OM10-A29; OM10-A30; OM10-A31; OM10-A32; OM10-A33; OM10-A34; OM10-A34A; OM10-A35; OM10-A36; OM10-A37; OM11-10; OM11-9; OM11-A21A; OM11-A21B; OM11-A22; OM11-A26; OM11-A27; OM11-A27-1; OM11-A28B; OM11-A29; OM11-A29-1; OM11-A29-2; OM12-024; OM12-025; OM12-026; OM12-027; OM12-028; OM12-029; OM12-030; OM12-031; OM12-032; OM12-033; OM12-034A; OM12-034B; OM12-035; OM12-036; OM12-037; OM12-038; OM12-039; OM12-040; OM12-041; OM12-042; OM12-043; OM12-044; OM12-045; OM12-046; OM12-047; OM12-048; OM12-049; OM12-050; OM12-051; OM12-052; OM12-053; OM12-054; OM12-055; OM12-057; OM12-058; OM12-059; OM12-201; OM12-202; OM12-203; OM12-204; OM12-205; OM12-206; OM12-207; OM12-208; OM12-209; OM12-210; OM12-211; OM12-212A; OM12-212B; OM12-213; OM12-214; OM12-215; OM12-216A; OM12-216B; OM12-217; OM12-218; OM12-219; OM12-220; OM12-Hy0; OM12-Hy018; OM12-Hy023; OM12-Hy025; OM12-Hy030; OM12-Hy032A; OM12-Hy032B; OM12-Hy032C; OM12-Hy032D; OM12-Hy038; OM12-Hy039; OM12-Hy042; OM12-Hy055B; OM12-Hy058.5; OM12-Hy059; OM12-Hy059.5; OM12-Hy062; OM12-Hy068; OM12-Hy077; OM12-Hy080; OM12-Hy080.5; OM12-Hy096; OM12-Hy102; OM12-Hy103; OM12-Hy108; OM12-Hy154; OM12-Hy166; OM15-01; OM15-02; OM15-03A; OM15-03B; OM15-03E; OM15-03F; OM15-04; OM15-05; OM15-06; OM15-07; OM15-08; OM15-09; OM15-10; OM15-11; OM15-13; OM15-14; OM15-15A; OM15-15B; OM15-15C; Om15-15D; OM15-16; OM15-17; OM15-18; OM15-19A; OM15-19B; OM15-19C; OM15-20; OM15-21; OM15-22; OM15-23; OM15-24; OM15-25A; OM15-25B; OM15-26; OM15-27; OM15-28; OM15-29G; OM15-29I; OM15-29J; OM15-30; OM15-31; OM15-32; OM15-33; OM15-34; OM15-35; OM15-36; OM15-37; OM15-40; Oman; Oman Ophiolite; Orthopyroxene, altered; Orthopyroxene, grain size; Orthopyroxene, habit; Orthopyroxene, modal; Orthopyroxene, shape; Oxides, modal; Petrographic Data; Plagioclase, altered; Plagioclase, grain size; Plagioclase, habit; Plagioclase, modal; Plagioclase, shape; Plagioclase, zoning extent; Plagioclase, zoning type; Quartz; Rocks in Hydrothermal Fault Zone; Rock type; Samail Ophiolite; Sampling by hand; Texture; Texture, modified; Unit; Visual description
    Type: Dataset
    Format: text/tab-separated-values, 5809 data points
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  • 4
    Publication Date: 2023-02-22
    Keywords: According to Gillis et al. (2014); Aluminium oxide; Aluminium oxide, standard deviation; Anorthite content in plagioclase; Anorthite content in plagioclase, standard deviation; Calcium oxide; Calcium oxide, standard deviation; Chromium(III) oxide; Chromium(III) oxide, standard deviation; Comment; Depth above Mohorovicic discontinuity; Electronprobe Microanalysis; Electron Probe Microanalysis (EPMA); Event label; Fast-spreading oceanic crust; gabbro; HAND; Iron oxide, FeO; Iron oxide, FeO, standard deviation; Magnesium oxide; Magnesium oxide, standard deviation; Magnesium oxide/(Magnesium oxide/Iron oxide, FeO, total) molar ratio; Magnesium oxide/(Magnesium oxide/Iron oxide, FeO, total) molar ratio, standard deviation; Main Lithology; Manganese oxide; Manganese oxide, standard deviation; Mineral Analyses; Nickel oxide; Nickel oxide, standard deviation; Number of analyses; OM10-A11-1a; OM10-A11-1c; OM10-A11-1n; OM10-A11-1o; OM10-A11-1p; OM10-A11-1q; OM10-A11-1v; OM10-A11-1w; OM10-A11-1x; OM10-A12-1D; OM10-A13; OM10-A14; OM10-A14A; OM10-A14b; OM10-A15; OM10-A16; OM10-A17; OM10-A17-1; OM10-A17-2; OM10-A18; OM10-A18-1; OM10-A18-2a; OM10-A19; OM10-A20; OM10-A20A; OM10-A20B; OM10-A21; OM10-A22; OM10-A23; OM10-A23B; OM10-A24; OM10-A25; OM10-A26; OM10-A27; OM10-A28; OM10-A29; OM10-A30; OM10-A31; OM10-A32; OM11-A21A; OM11-A21B; OM11-A22; OM11-A26; OM11-A27; OM11-A27-1; OM11-A28B; OM11-A29; OM11-A29-1; OM11-A29-2; OM12-025; OM12-026; OM12-027; OM12-028; OM12-029; OM12-030; OM12-031; OM12-032; OM12-033; OM12-034A; OM12-034B; OM12-035; OM12-036; OM12-037; OM12-038; OM12-039; OM12-040; OM12-041; OM12-042-1; OM12-042-2; OM12-043; OM12-044; OM12-045; OM12-046; OM12-047; OM12-048; OM12-049; OM12-050; OM12-051; OM12-052; OM12-053; OM12-054; OM12-055; OM12-057; OM12-058; OM12-059; OM12-201; OM12-202; OM12-203; OM12-204; OM12-205; OM12-206; OM12-207; OM12-208; OM12-209; OM12-210; OM12-211; OM12-213; OM12-214; OM12-217; OM12-218; OM12-219; OM12-Hy0; OM12-Hy018; OM12-Hy023; OM12-Hy025; OM12-Hy030; OM12-Hy032B; OM12-Hy038; OM12-Hy039-1; OM12-Hy039-2; OM12-Hy042; OM12-Hy055B; OM12-Hy059; OM12-Hy059.5; OM12-Hy062; OM12-Hy068; OM12-Hy077; OM12-Hy080.5; OM12-Hy102-1; OM12-Hy102-2; OM12-Hy108; OM12-Hy154-1; OM12-Hy154-2; OM12-Hy166; OM15-01; OM15-02; OM15-10; OM15-13; OM15-15C; Om15-15D; OM15-18; OM15-19A; OM15-21; OM15-24; OM15-26; OM15-27; OM15-30; OM15-32; OM15-33; OM15-40; Oman; Oman Ophiolite; Petrographic Data; Phase; Potassium oxide; Potassium oxide, standard deviation; Reference/source; Rocks in Hydrothermal Fault Zone; Rock type; Samail Ophiolite; Sample comment; Sampling by hand; Silicon dioxide; Silicon dioxide, standard deviation; Sodium oxide; Sodium oxide, standard deviation; Textural features; Texture; Titanium dioxide; Titanium dioxide, standard deviation; Total; Unit
    Type: Dataset
    Format: text/tab-separated-values, 18271 data points
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  • 5
    Publication Date: 2023-07-10
    Description: As largest and best-exposed paleo-fast-spread oceanic crust on land, the Samail ophiolite in the Sultanate of Oman represents an ideal natural laboratory for investigating processes at fast-spreading mid-ocean ridges. We studied two layered gabbro sequences from different stratigraphic depths: one from the middle of the plutonic crust showing dm-scale modal layering with olivine abundance gradually decreasing from layer base to top (Wadi Somerah, Sumail block) and one located near the crust-mantle boundary showing mm-scale layers being enriched in olivine (Wadi Wariyah, Wadi Tayin block). Petrological analyses for major and minor element compositions of the phases olivine, clinopyroxene and plagioclase were performed at the Institut für Mineralogie (Leibniz Universität Hannover, Germany) using a Cameca SX100 microprobe. Core and rim analyses on olivine, clinopyroxene and plagioclase were done using a beam current of 15 nA with 15 kV accelerating voltage and 10 seconds measurement time on the peak and 5 seconds on each background. On clinopyroxene, the beam was defocused to 20 µm, olivine and plagioclase analyses were performed with a beam defocused to 2 µm. Calcium in olivine and Mg in plagioclase profiles for the estimation of closure temperatures and cooling rates were performed with a focused beam with an accelerating voltage of 15 kV, a beam current of 100 nA, and 240 seconds peak time and 120 seconds on each background. Electron backscattered diffraction (EBSD) was performed at Géosciences Montpellier (Université de Montpellier, France) using a Jeol JSM 5600 SEM equipped with an Oxford/Nordlys EBSD detector. The accelerating voltage was 15 kV, the scanning step size varied from 16.5 to 30 µm depending on the grain size of the sample. Major element measurements reveal mineral compositions being more primitive in Wadi Wariyah than in Wadi Somerah. Compositions vary along the profiles representing no systematic trend, neither along the entire profiles nor within single layers. Weak zonation is observed in the Mg# and the TiO2 content of clinopyroxene in Wadi Somerah. The modeled cooling rates vary from 1.2 to 21°C per thousand years in Wadi Somerah and 3 to 130°C per thousand years in Wadi Wariyah. The closure temperatures of olivine cores vary from 910 to 965°C in Wadi Somerah and from 1074 to 1106°C in Wadi Wariyah. The closure temperatures of plagioclase rims vary from 850 to 930°C. The fabric strength is generally low in Wadi Somerah and slightly increased in Wadi Wariyah. BA and BC indices give a stronger lineation in Wadi Wariyah and the grain orientation spread is also higher for the samples from Wadi Wariyah.
    Keywords: Acantholeberis curvirostris; Aluminium oxide; Aluminium oxide, standard deviation; Analysis; Biogenic silica; Biogenic silica, standard deviation; Calcium number; Calcium number, standard deviation; Calcium oxide; Calcium oxide, standard deviation; CAMECA SX100 Electron Probe MicroAnalizer; Chromium(III) oxide; Chromium(III) oxide, standard deviation; Closure temperature; Comment; Cooling rate; DEPTH, sediment/rock; Drilling/coring; Elements, total; Elevation of event; Event label; Event layer type; Fabric strength; Formation of Layered Gabbros; Grain orientation spread; Grains, counted/analyzed; Iron oxide, FeO; Iron oxide, FeO, standard deviation; Latitude of event; Layer number; Longitude of event; Lower Oceanic Crust; Magnesium number; Magnesium number, standard deviation; Magnesium oxide; Magnesium oxide, standard deviation; Main Lithology; Manganese oxide; Manganese oxide, standard deviation; Minerals; Nickel oxide; Nickel oxide, standard deviation; OM10-Sam; OM10-War; Oman; Oman Ophiolite; Potassium oxide; Potassium oxide, standard deviation; Sample code/label; Sodium oxide; Sodium oxide, standard deviation; Symmetry index; Titanium dioxide; Titanium dioxide, standard deviation; Wadi Somerah, Sumail block; Wadi Wariyah, Wadi Tayin block
    Type: Dataset
    Format: text/tab-separated-values, 7214 data points
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  • 6
    Publication Date: 2023-09-29
    Description: We have selected 39 gabbro samples from the Wadi Gideah Transect sample suite, representing a full coherent crustal profile from the Moho transition zone (MTZ) to the dike/gabbro transition with an average sample spacing of about 120 m along the crustal depth. All samples were taken at outcrops of fresh gabbro along the Wadi. The height above Moho (h.a.M.) was calculated with respect to the MTZ reference latitude of 22.9152N DD, assuming a generalized average dip of 28° for the layering of the lower gabbros in the Wadi Gideah area. The freshest and primary region of each hand specimen was cut into a block with a water-cooled diamond-blade saw, avoiding areas influenced by secondary weathering and hydrothermal overprint, and subsequently processed to a polished thin-section. We studied the thin-sections using a polarized light microscope to identify petrographic key parameters, which are presented here.
    Keywords: Clinopyroxene, altered; Clinopyroxene, grain size; Clinopyroxene, habit; Clinopyroxene, modal; Clinopyroxene, shape; crystallization temperature; Date/Time of event; Depth above Mohorovicic discontinuity; EMPA; EPMA; Event label; foliated gabbro; fossile ocean crust; gabbro; Geochemistry; Grain size description; HAND; Hornblende, modal; in situ data; LA-ICPMS; LA-ICP-MS; Latitude of event; layered gabbro; Longitude of event; major and trace element data; major and trace elements; major element analysis; major elements; microscopy; Mineral compositions; mineral data; Minerals, total alteration; Minerals, total modal primary; modal proportions; ocean crust accretion; ocean crust formation; oceanic crust; olivine; Olivine, altered; Olivine, grain size; Olivine, habit; Olivine, modal; Olivine, shape; OM10-A13; OM10-A14b; OM10-A16; OM10-A17; OM10-A17-1; OM10-A18; OM10-A18-1; OM10-A18-2a; OM10-A19; OM10-A20; OM10-A26; OM10-A27; OM10-A28; OM10-A30; OM10-A32; OM11-A21A; OM11-A22; OM11-A26; OM11-A29-2; OM12-025; OM12-038; OM12-039; OM12-040; OM12-044; OM12-048; OM12-052; OM12-054; OM12-055; OM12-201; OM12-206; OM12-217; OM12-218; OM12-219; OM15-10; OM15-18; OM15-24; OM15-27; OM15-30; OM15-33; Oman; Oman Ophiolite; ophiolite; Orthopyroxene, modal; Oxides, modal; Petrography; Plagioclase, altered; Plagioclase, grain size; Plagioclase, habit; Plagioclase, modal; Plagioclase, shape; Plagioclase, zoning; Plagioclase, zoning type; rock description; Rock type; Samail Ophiolite; Sampling by hand; Temperature; thin-section; trace- and major elements; trace element; trace elements; Unit; Wadi Gideah; Wadi Gideah Transect
    Type: Dataset
    Format: text/tab-separated-values, 860 data points
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  • 7
    Publication Date: 2023-09-29
    Description: The main part of major element concentrations was measured at the Institute of Mineralogy of the University of Hannover using a Cameca SX100 electron microprobe operated through the Cameca PeakSight software. Additional data was generated at the Institute of Geosciences at Kiel University using a JOEL JXA 8900 R electron microprobe. Results from both labs have been cross-checked, analyzing identical samples. All elements have been measured at Kα emission lines with a focused and fixed beam, an acceleration voltage of 15 kV, a beam current of 15 nA, and a signal count time per element of 10s on peak and 5s on each background. Matrix-correction according to PAP. For each of the 39 samples, repetitive measurements on multiple crystals have been carried out. We put a strong focus on reliable primitive core measurements; nevertheless, for most samples, we also acquired data for rim compositions. P-values have been calculated based on a paired, two-sided t-test to evaluate the significance of the difference between core and rim mean concentrations statistically and allow for H0 hypothesis testing. Additionally, propagation of uncertainty has been calculated for Mg# and Ca#.
    Keywords: Aluminium oxide; Aluminium oxide, standard deviation; Calcium oxide; Calcium oxide, standard deviation; Chromium(III) oxide; Chromium(III) oxide, standard deviation; crystallization temperature; Date/Time of event; Depth above Mohorovicic discontinuity; EMPA; EPMA; Event label; foliated gabbro; fossile ocean crust; gabbro; Geochemistry; Grains; HAND; in situ data; Iron oxide, FeO; Iron oxide, FeO, standard deviation; LA-ICPMS; LA-ICP-MS; Latitude of event; layered gabbro; Longitude of event; Magnesium number; Magnesium number, standard error; Magnesium oxide; Magnesium oxide, standard deviation; major and trace element data; major and trace elements; major element analysis; major elements; Manganese oxide; Manganese oxide, standard deviation; microscopy; Mineral compositions; mineral data; modal proportions; Number, total; ocean crust accretion; ocean crust formation; oceanic crust; olivine; OM10-A13; OM10-A14b; OM10-A16; OM10-A17; OM10-A17-1; OM10-A18; OM10-A18-1; OM10-A18-2a; OM10-A19; OM10-A20; OM10-A26; OM10-A27; OM10-A28; OM10-A30; OM10-A32; OM11-A21A; OM11-A22; OM11-A26; OM11-A29-2; OM12-025; OM12-038; OM12-039; OM12-040; OM12-044; OM12-048; OM12-052; OM12-054; OM12-055; OM12-201; OM12-206; OM12-217; OM12-218; OM12-219; OM15-10; OM15-18; OM15-24; OM15-27; OM15-30; OM15-33; Oman; Oman Ophiolite; ophiolite; Petrography; Potassium oxide; Potassium oxide, standard deviation; rock description; Samail Ophiolite; Sample comment; Sampling by hand; Silicon dioxide; Silicon dioxide, standard deviation; Sodium oxide; Sodium oxide, standard deviation; Sum; Temperature; thin-section; Titanium dioxide; Titanium dioxide, standard deviation; trace- and major elements; trace element; trace elements; Wadi Gideah; Wadi Gideah Transect
    Type: Dataset
    Format: text/tab-separated-values, 1947 data points
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  • 8
    Publication Date: 2023-09-29
    Description: For in situ analysis of 29 trace elements, carried out at the LA-ICP-MS lab of the Institute of Geosciences at Kiel University, a 193nm ArF-exciplex laser ablation system (GeoLasPro HD, Coherent) coupled to an Agilent 7900s ICP-MS was used for most samples. Some samples have been measured using an older Agilent 7500s ICP-MS, and a minor portion was measured using a Thermo Scientific Element XR ICP-SF-MS. In any case, samples and reference materials were loaded to a Zuerich-type, two-volume low dispersion high capacity laser ablation cell, which was flushed with 995 ml min-1 helium carrier gas. Additionally, 14 ml min-1 hydrogen was added upstream of the cell to enhance ionization at the ICP and reduce oxide formation. Many elements in plagioclase are within the ultra-trace concentration range (〈 1 µg/g). Therefore, the laser was operated at a pulse frequency of 16 Hz and a fluence of 18 J cm-2 with a crater size of 120 µm for plagioclase. Clinopyroxene was measured at 10 Hz, 12 J cm-2, and a crater of 44 to 32µm. We could not detect any adverse effects from mass load of the ICP for the elements determined. The oxide production rate was monitored by Th/ThO and kept below 0.1%. Time-resolved data acquisition for each measurement was split into 20 s background, 40 s sample ablation, and 20 s washout monitoring time. Dwell times were optimized for the expected concentration range for each element. Where possible, we aimed to perform five proximal repetitions for five crystals of each phase per sample to evaluate crystal core heterogeneity as well as sample phase heterogeneity.
    Keywords: Barium; Cerium; Chromium; Crystal identification; crystallization temperature; Date/Time of event; Depth above Mohorovicic discontinuity; Dysprosium; EMPA; EPMA; Erbium; Europium; Event label; foliated gabbro; fossile ocean crust; gabbro; Gadolinium; Geochemistry; Hafnium; HAND; Holmium; in situ data; LA-ICPMS; LA-ICP-MS; LA-ICP-MS, Laser-ablation inductively coupled plasma mass spectrometer; Lanthanum; Latitude of event; layered gabbro; Lead; Lithium; Longitude of event; Lutetium; major and trace element data; major and trace elements; major element analysis; major elements; microscopy; Mineral compositions; mineral data; modal proportions; Neodymium; Niobium; ocean crust accretion; ocean crust formation; oceanic crust; olivine; OM10-A13; OM10-A14b; OM10-A16; OM10-A17; OM10-A17-1; OM10-A18; OM10-A18-1; OM10-A18-2a; OM10-A19; OM10-A20; OM10-A26; OM10-A27; OM10-A28; OM10-A30; OM10-A32; OM11-A21A; OM11-A22; OM11-A26; OM11-A29-2; OM12-025; OM12-038; OM12-039; OM12-040; OM12-044; OM12-048; OM12-052; OM12-054; OM12-055; OM12-201; OM12-206; OM12-217; OM12-218; OM12-219; OM15-10; OM15-18; OM15-24; OM15-27; OM15-30; OM15-33; Oman; Oman Ophiolite; ophiolite; Petrography; Phase; Praseodymium; rock description; Rubidium; Samail Ophiolite; Samarium; Sample comment; Sampling by hand; Scandium; Spot identification; Strontium; Tantalum; Temperature; Terbium; thin-section; Thorium; Thulium; trace- and major elements; trace element; trace elements; Uranium; Vanadium; Wadi Gideah; Wadi Gideah Transect; Ytterbium; Yttrium; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 71763 data points
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  • 9
    Publication Date: 2023-09-29
    Keywords: Aluminium oxide; Aluminium oxide, standard deviation; Calcium number; Calcium number, standard error; Calcium oxide; Calcium oxide, standard deviation; crystallization temperature; Depth above Mohorovicic discontinuity; EMPA; EPMA; Event label; foliated gabbro; fossile ocean crust; gabbro; Geochemistry; Grains; HAND; ICDP; in situ data; International Continental Scientific Drilling Program; Iron oxide, FeO; Iron oxide, FeO, standard deviation; LA-ICPMS; LA-ICP-MS; layered gabbro; Magnesium oxide; Magnesium oxide, standard deviation; major and trace element data; major and trace elements; major element analysis; major elements; Manganese oxide; Manganese oxide, standard deviation; microscopy; Mineral compositions; mineral data; modal proportions; Number, total; ocean crust accretion; ocean crust formation; oceanic crust; olivine; OM10-A13; OM10-A14b; OM10-A16; OM10-A17; OM10-A17-1; OM10-A18; OM10-A18-1; OM10-A18-2a; OM10-A19; OM10-A20; OM10-A26; OM10-A27; OM10-A28; OM10-A30; OM10-A32; OM11-A21A; OM11-A22; OM11-A26; OM11-A29-2; OM12-025; OM12-038; OM12-039; OM12-040; OM12-044; OM12-048; OM12-052; OM12-054; OM12-055; OM12-201; OM12-206; OM12-217; OM12-218; OM12-219; OM15-10; OM15-18; OM15-24; OM15-27; OM15-30; OM15-33; Oman; Oman Ophiolite; ophiolite; Petrography; Potassium oxide; Potassium oxide, standard deviation; rock description; Samail Ophiolite; Sample comment; Sampling by hand; Silicon dioxide; Silicon dioxide, standard deviation; Sodium oxide; Sodium oxide, standard deviation; Sum; Temperature; thin-section; Titanium dioxide; Titanium dioxide, standard deviation; trace- and major elements; trace element; trace elements; Wadi Gideah; Wadi Gideah Transect
    Type: Dataset
    Format: text/tab-separated-values, 1511 data points
    Location Call Number Expected Availability
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  • 10
    Publication Date: 2023-07-10
    Keywords: According to Gillis et al. (2014); After Ernst and Liu (1998); Aluminium oxide; Aluminium oxide, standard deviation; Analysis; Calcium oxide; Calcium oxide, standard deviation; Chlorine; Chlorine, standard deviation; Chromium(III) oxide; Chromium(III) oxide, standard deviation; Depth above Mohorovicic discontinuity; Electronprobe Microanalysis; Electron Probe Microanalysis (EPMA); Event label; Fast-spreading oceanic crust; Fluorine; Fluorine, standard deviation; gabbro; HAND; Iron oxide, FeO; Iron oxide, FeO, standard deviation; Magnesium oxide; Magnesium oxide, standard deviation; Magnesium oxide/(Magnesium oxide/Iron oxide, FeO, total) molar ratio; Manganese oxide; Manganese oxide, standard deviation; Mineral Analyses; Number of analyses; OM10-A25-1D; OM12-027; OM12-030; OM12-032; OM12-042; OM12-050; OM12-051; OM12-058; OM12-059; OM12-Hy023; OM12-Hy030; OM12-Hy032B; OM12-Hy032C; OM12-Hy032D; OM12-Hy038; OM12-Hy039; OM12-Hy059; OM12-Hy059.5; OM12-Hy080.5; Oman; Oman Ophiolite; Petrographic Data; Potassium oxide; Potassium oxide, standard deviation; Rock type; Samail Ophiolite; Sample comment; Sampling by hand; Silicon dioxide; Silicon dioxide, standard deviation; Sodium oxide; Sodium oxide, standard deviation; Temperature, technical; Texture; Titanium dioxide; Titanium dioxide, standard deviation; Total; Unit
    Type: Dataset
    Format: text/tab-separated-values, 927 data points
    Location Call Number Expected Availability
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