Zobrazeno 1 - 10
of 76
pro vyhledávání: '"Chiara Domeneghetti"'
Autor:
Anna Barbaro, Fabrizio Nestola, Lidia Pittarello, Ludovic Ferrière, Mara Murri, Konstantin D. Litasov, Oliver Christ, Matteo Alvaro, M. Chiara Domeneghetti
Publikováno v:
American Mineralogist. 107:377-384
The formation and shock history of ureilite meteorites, a relatively abundant type of primitive achondrites, has been debated for decades. For this purpose, the characterization of carbon phases can provide further information on diamond and graphite
Autor:
Ludovic Ferrière, Matteo Alvaro, Lidia Pittarello, Maria Chiara Domeneghetti, Konstantin D. Litasov, Anna Barbaro, Fabrizio Nestola, Oliver Christ, Sofia Lorenzon
Publikováno v:
Geochimica et Cosmochimica Acta. 309:286-298
The occurrence of shock-induced diamonds in ureilite meteorites is common and is used to constrain the history of the ureilite parent bodies. We have investigated a fragment of the Kenna ureilite by micro-X-ray diffraction, micro-Raman spectroscopy a
Autor:
Maria Chiara Domeneghetti, Martin Hart, Adrian P. Jones, Rachael L. Smith, Nikolay V. Sobolev, Kit McColl, Alla M. Logvinova, Christoph G. Salzmann, Mara Murri, Matteo Alvaro, Paul F. McMillan, Furio Corà, Péter Németh, Fabrizio Nestola, Sergey A. Vishnevsky
Publikováno v:
Scientific Reports, Vol 9, Iss 1, Pp 1-8 (2019)
Scientific Reports
Scientific Reports
Diamond is a material of immense technological importance and an ancient signifier for wealth and societal status. In geology, diamond forms as part of the deep carbon cycle and typically displays a highly ordered cubic crystal structure. Impact diam
Autor:
Maria Chiara Domeneghetti, Fabrizio Nestola, Tiziana Boffa Ballaran, Katharina S. Scheidl, Matteo Alvaro, Ronald Miletich, Mariana Derzsi, Kamil Tokár, Mauro Prencipe, Stephan Klemme, Sula Milani, Ross J. Angel, Mattia L. Mazzucchelli, Lorenzo Scandolo
Publikováno v:
American Mineralogist. 102:851-859
The thermo-elastic behavior of synthetic single crystals of grossular garnet (Ca 3 Al 2 Si 3 O 12 ) has been studied in situ as a function of pressure and temperature separately. The same data collection protocol has been adopted to collect both the
Characterization of carbon phases in Yamato 74123 ureilite to constrain the meteorite shock history.
Autor:
Barbaro, Anna, Nestola, Fabrizio, Pittarello, Lidia, Ferrière, Ludovic, Murri, Mara, Litasov, Konstantin D., Christ, Oliver, Alvaro, Matteo, Chiara Domeneghetti, M.
Publikováno v:
American Mineralogist; Mar2022, Vol. 107 Issue 3, p377-384, 8p
Autor:
Cristian, Carli, Pratesi, Giovanni, Maria Chiara Domeneghetti, Antonio, Langone, Matteo, Alvaro, Casalini, Martina, Mara, Murri, Moggi Cecchi, Vanni, Roush, Ted L.
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od_______310::cdd3b0bbcebde3761833ec9754143a1d
http://hdl.handle.net/2158/1220467
http://hdl.handle.net/2158/1220467
Autor:
Sabrina Nazzareni, Cristina Pauselli, Henrik Skogny, Mara Murri, Maria Chiara Domeneghetti, Matteo Alvaro, Roland Stalder, Maurizio Petrelli, Maria Cristina De Sanctis, Michelangelo Formisano, Costanzo Federico
Publikováno v:
Goldschmidt Abstracts.
Autor:
Maria Chiara Domeneghetti, Fabio Tateo, Fabrizio Nestola, Sergio Billotta, Eugenio Piluso, Loredana Pompilio, Monica Pondrelli, Maria Carla Somma, Lucia Marinangeli, Oliva Menozzi, Carlo Di Giulio, P. Petrinca, Anna Chiara Tangari, Anonio Baliva, Giovanni Bonanno, Vasco La Salvia, A. M. Fioretti
Publikováno v:
Rendiconti lincei. Scienze fisiche e naturali 26 (2015): 529–537. doi:10.1007/s12210-015-0477-3
info:cnr-pdr/source/autori:Marinangeli L.; Pompilio L.; Baliva A.; Billotta S.; Bonanno G.; Domeneghetti M.C.; Fioretti A.M.; Menozzi O.; Nestola F.; Piluso E.; Pondrelli M.; la Salvia V.; Somma M.C.; Tateo F.; Petrinca P.; Di Giulio C.; Tangari A.C./titolo:Development of an ultra-miniaturised XRD%2FXRF instrument for the in situ mineralogical and chemical analysis of planetary soils and rocks: implication for archaeometry/doi:10.1007%2Fs12210-015-0477-3/rivista:Rendiconti lincei. Scienze fisiche e naturali/anno:2015/pagina_da:529/pagina_a:537/intervallo_pagine:529–537/volume:26
info:cnr-pdr/source/autori:Marinangeli L.; Pompilio L.; Baliva A.; Billotta S.; Bonanno G.; Domeneghetti M.C.; Fioretti A.M.; Menozzi O.; Nestola F.; Piluso E.; Pondrelli M.; la Salvia V.; Somma M.C.; Tateo F.; Petrinca P.; Di Giulio C.; Tangari A.C./titolo:Development of an ultra-miniaturised XRD%2FXRF instrument for the in situ mineralogical and chemical analysis of planetary soils and rocks: implication for archaeometry/doi:10.1007%2Fs12210-015-0477-3/rivista:Rendiconti lincei. Scienze fisiche e naturali/anno:2015/pagina_da:529/pagina_a:537/intervallo_pagine:529–537/volume:26
An ultra-miniaturised (mass 1.5 kg; volume ~22 × 6 × 12 cm3) instrument which combines X-ray diffraction and fluorescence has been developed for the mineralogical and chemical characterization of Martian soils/rocks and was included in the ExoMars-
Autor:
Fabrizio Nestola, G. Amulele, Matteo Alvaro, Francesco Pandolfo, Shun-ichiro Karato, M. Chiara Domeneghetti, Fernando Cámara
Publikováno v:
Physics and Chemistry of Minerals. 42:1-14
An in situ single-crystal high-temperature X-ray diffraction study was performed on clinopyroxene crystals along the jadeite, (NaAlSi2O6 Jd)–diopside (CaMgSi2O6 Di) join. In particular, natural samples of jadeite, diopside, P2/n omphacite and three