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Author Weisen Shen, Douglas A. Wiens, Andrew J. Lloyd, Andrew A. Nyblade
Title A Geothermal Heat Flux Map of Antarctica Empirically Constrained by Seismic Structure Type Journal
Year (down) 2020 Publication Geophysical Research Letters Abbreviated Journal
Volume 47 Issue 14 Pages e2020GL086955
Keywords Antarctica crust and uppermost mantle geothermal heat flux ice sheet modeling
Abstract The geothermal heat flux (GHF) is an important boundary condition for modeling the movement of the Antarctic ice sheet but is difficult to measure systematically at a continental scale. Earlier GHF maps suffer from low resolution and possibly biased assumptions in tectonism and crustal heat generation, resulting in significant uncertainty. We present a new GHF map for Antarctica constructed by empirically relating the upper mantle structure to known GHF in the continental United States. The new map, compared with previously seismologically determined one, has improved resolution and lower uncertainties. New features in this map include high GHF in the southern Transantarctic Mountains where warmer uppermost mantle is introduced by lithospheric removal and in the Thwaites Glacier region. Additionally, a modest GHF in the central West Antarctic Rift system near the Siple Coast and an absence of large-scale regions with GHF greater than 90 mW/m2 are found.
Programme 133
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ISSN 1944-8007 ISBN Medium
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Call Number Serial 7887
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Author
Title On the observation of magnetic events on broad-band seismometers Type Journal
Year (down) 2020 Publication Earth, planets and space Abbreviated Journal
Volume 72 Issue 1 Pages 109
Keywords Anthropogenic sources of magnetic noise Seismic instrumentation Sudden Storm Commencements
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Programme 133
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ISSN 1880-5981 ISBN Medium
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Notes Approved yes
Call Number Serial 7888
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Author Alexey Lyubushin
Title Global Seismic Noise Entropy Type Journal
Year (down) 2020 Publication Frontiers in Earth Science Abbreviated Journal
Volume 8 Issue Pages 558
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Programme 133
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ISSN 2296-6463 ISBN 2296-6463 Medium
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Notes Approved yes
Call Number Serial 7889
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Author
Title Impact of 3-D Earth structure on W-phase CMT parameters Type Journal
Year (down) 2020 Publication Geophysical Journal International Abbreviated Journal
Volume 223 Issue 2 Pages 1432-1445
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Programme 133
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ISSN 0956-540X ISBN Medium
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Notes Approved yes
Call Number Serial 7890
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Author Sara Aoroli
Title Calibration and exploitation of an automatic spectral albedometer to estimate near-surface snow SSA time series Type Master 2
Year (down) 2020 Publication Abbreviated Journal
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Programme 1110
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Call Number Serial 7891
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Author
Title Evidence of irradiation in interplanetary space in minerals from an ultracarbonaceous Antarctic micrometeorites (UCAMM) Type Peer-reviewed symposium
Year (down) 2020 Publication Lunar and Planetary Science Conference Abbreviated Journal
Volume Issue Pages
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Abstract
Programme 1120
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Call Number Serial 7909
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Author
Title STEM and STXM-XANES analysis of FIB sections of Ultracarbonaceous Antarctic Micrometeorites (UCAMMs) Type Peer-reviewed symposium
Year (down) 2020 Publication Lunar and Planetary Science Conference, id 2117 Abbreviated Journal
Volume 51 Issue Pages 2117
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Abstract Introduction: Ultracarbonaceous Antarctic Micrometeorites (UCAMMS) are extraterrestrial dust particles containing large amount of carbonaceous material with elevated D/H ratios [1] and high N/C atomic ratio (up to 0.2)[2]. UCAMMS are rare (~ 1% of the particles in the Concordia meteorite collection) but they have been identified in several collection of interplanetary dust [3, 4]. They are most probably of cometary origin. Here, we studied the association of organic matter and minerals by scanning transmission X-ray microscopy (STXM-XANES) coupled with scanning transmission electronic microscopy (TEM/STEM). Samples and Methods: The UCAMMs studied here were collected in the Antarctic snow, close to the Concordia station at Dome C [3]. FIB sections of 8 UCAMMs (DC06-18, DC06-41, DC06-43, DC06-65, DC06-308, DC06-139, DC16-30, DC16-309) were analyzed using synchrotron based STXM-XANES at the carbon, nitrogen and oxygen K-edges. The FIB sections were subsequently analyzed with transmission electron microscopy (TEM/STEM) using a FEI Tecnai G2 20 and a FEI TITAN Themis 300 [5, 6]. Peak identification of STXM-XANES spectra are based on [7]. XANES spectra are processed and quantified using Quantorxs method [8] and quantification of STEM EDS spectra has been realized using Hyperspy software [9]. Here, we mainly present results obtained on two recently identified UCAMMs (DC06-308 and DC16-309) and compare them with previous observations [1, 5, 6]. Results: The STXM-XANES analysis reveals 3 types of organic matter (OM) characterized by different carbon speciation. Figure 1 shows type I OM in blue and type II OM in green, both having spectra close to that of chondritic insoluble organic matter (IOM). The main peaks of type I and II OMs are found around 284.8 eV (aromatic and olefinic groups (C=C)), 286.4 eV (ketone and phenol C=O) and 288.4 eV (carboxyl O=C-O). Type II OM exhibits similar functional groups as type I OM but the first peak position is shifted to 285 eV, indicating a stronger contribution of the aromatic groups. The atomic N/C ratio of types I/II OMs range between 0.01 and 0.05 (1?=0.02) similar to those of chondritic IOM. The type III, in red on Figure 1 exhibits larger differences. The main peak is at 286.4 eV (C?N nitrile), a small peak at 284.8 eV (alkene
Programme 1120
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Call Number Serial 7910
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Author Y. Kebukawa, M. Zolensly, J. Mathurin, E. Dartois, C. Engrand, J. Duprat, A. Deniset-Besseau, A. Dazzi, M. Fries, T. Ohigashi, D. Wakabayashi, S. Yamashita, Y. Takeichi, Y. Takahashi, M. Kondo, M. Ito, Y. Kodama, Z. Rahman, K. Kobayashi
Title Organic matter in the Aguas Zarcas (CM2) meteorite: high abundance of aliphatic carbon in metal-rich lithology Type Peer-reviewed symposium
Year (down) 2020 Publication Lunar and Planetary Science Conference, id 1349 Abbreviated Journal
Volume 51 Issue Pages 1614
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Programme 1120
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Call Number Serial 7911
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Author J Mathurin, E Dartois, C Engrand, J Duprat, A Deniset- Besseau, A Dazzi, Y Kebukawa, T Noguchi, D Troadec
Title Nanometre-scale infrared chemical imaging (AFM-IR) of organic matter in ultra-carbonaceous Antarctic micrometeorites (UCAMMS) and future analyses of Hayabusa 2 samples. Type Peer-reviewed symposium
Year (down) 2020 Publication Lunar and Planetary Science, id 1983 Abbreviated Journal
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Abstract Introduction: The chemical composition of organic matter (OM) in interplanetary samples (meteorites and micrometeorites) is suitably characterized by the distribution of the different chemical bonds using infrared (IR) vibrational spectroscopy (see e.g. [1]). Classical IR microscopy provides a global view of the dust grain chemical structure content but remains limited by the diffraction, with typical spot sizes sampling a few micrometers in the mid-IR range. This spatial resolution limitation is well above that of complementary techniques such as isotopic imaging with NanoSIMS or transmission electron or X-ray microscopy techniques. These techniques reveal mineralogical, chemical and isotopic heterogeneities at the sub-micron scale but do not give full access to the distribution of the various chemical bonds. The IR diffraction limitation can be circumvented by using AFM-IR microscopy. This technique opens a new window for studies of OM at ten to tens of nanometer scales and will be of importance for studies of the samples from carbonaceous asteroid Ryugu, returned by the Hayabusa 2 space probe in December 2020. AFM-IR is now a well-established microscopy technique in the vibrational field. It combines an atomic force microscope (AFM) and a tunable IR source to detect photo-thermal effect and access chemical information down to a nanoscale resolution [2]. This technique is now applied in a wide diversity of scientific fields [3], and was recently used to analyze extraterrestrial OM [4, 5]. We report here on recent results obtained on imaging two UltraCarbonaceous Antarctic MicroMeteorites (UCAMMs) using AFM-IR [5]. A small fraction of the Antarctic micrometeorites from the Concordia collection consists in UCAMMs, particles with extreme concentrations in OM, most of them exhibiting large deuterium excesses [6]. UCAMMs are also found in Japanese interplanetary dust collections [7-9]. These UCAMMs most likely originate from the surface of small icy bodies in the outer regions of the solar system [1,6,7,10]. The large OM fraction of UCAMMs (considerably higher than in the most carbon-rich meteorites) enables direct analyses without the pre-treatment generally applied to extract the OM from other meteoritic samples, and give access to unaltered chemical maps of the intimate association of minerals and organics.
Programme 1120
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Call Number Serial 7912
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Author
Title Isotopic analyses of ion irradiation-induced organic residues, clues on the formation of organics from UCAMMS Type Peer-reviewed symposium
Year (down) 2020 Publication Lunar and Planetary Science, id 1630 Abbreviated Journal
Volume 51 Issue Pages 1630
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Programme 1120
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Series Editor Series Title Abbreviated Series Title
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Notes Approved yes
Call Number Serial 7913
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