Zobrazeno 1 - 10
of 276
pro vyhledávání: '"M, Barucci"'
Autor:
C. Belotti, F. Barbara, M. Barucci, G. Bianchini, F. D'Amato, S. Del Bianco, G. Di Natale, M. Gai, A. Montori, F. Pratesi, M. Rettinger, C. Rolf, R. Sussmann, T. Trickl, S. Viciani, H. Vogelmann, L. Palchetti
Publikováno v:
Atmospheric Measurement Techniques, Vol 16, Pp 2511-2529 (2023)
The Far-Infrared Radiation Mobile Observation System (FIRMOS) is a Fourier transform spectroradiometer developed to support the Far-infrared Outgoing Radiation Understanding and Monitoring (FORUM) satellite mission by validating measurement methods a
Externí odkaz:
https://doaj.org/article/a797afe620d54a03bece817f174683a6
Autor:
G. Di Natale, M. Barucci, C. Belotti, G. Bianchini, F. D'Amato, S. Del Bianco, M. Gai, A. Montori, R. Sussmann, S. Viciani, H. Vogelmann, L. Palchetti
Publikováno v:
Atmospheric Measurement Techniques, Vol 14, Pp 6749-6758 (2021)
The long-wave downwelling spectral radiance measurements performed by means of the Far-Infrared Radiation Mobile Observation System (FIRMOS) spectrometer at the summit of the Zugspitze (German Alps) in the winter 2018/19 allowed the retrieval of the
Externí odkaz:
https://doaj.org/article/a20f41464736440693e1448001ce6249
Autor:
L. Palchetti, M. Barucci, C. Belotti, G. Bianchini, B. Cluzet, F. D'Amato, S. Del Bianco, G. Di Natale, M. Gai, D. Khordakova, A. Montori, H. Oetjen, M. Rettinger, C. Rolf, D. Schuettemeyer, R. Sussmann, S. Viciani, H. Vogelmann, F. G. Wienhold
Publikováno v:
Earth System Science Data, Vol 13, Pp 4303-4312 (2021)
Measurements of the spectrum of the atmospheric emission in the far-infrared (FIR) range, between 100 and 667 cm−1 (100–15 µm) are scarce because of the detection complexity and of the strong absorption of air at ground level preventing the soun
Externí odkaz:
https://doaj.org/article/0b3b54987c3642d692f5209c411f9659
Autor:
Koji Wada, Matthias Grott, Patrick Michel, Kevin J. Walsh, Antonella M. Barucci, Jens Biele, Jürgen Blum, Carolyn M. Ernst, Jan Thimo Grundmann, Bastian Gundlach, Axel Hagermann, Maximilian Hamm, Martin Jutzi, Myung-Jin Kim, Ekkehard Kührt, Lucille Le Corre, Guy Libourel, Roy Lichtenheldt, Alessandro Maturilli, Scott R. Messenger, Tatsuhiro Michikami, Hideaki Miyamoto, Stefano Mottola, Thomas Müller, Akiko M. Nakamura, Larry R. Nittler, Kazunori Ogawa, Tatsuaki Okada, Ernesto Palomba, Naoya Sakatani, Stefan E. Schröder, Hiroki Senshu, Driss Takir, Michael E. Zolensky, International Regolith Science Group (IRSG) in Hayabusa2 project
Publikováno v:
Progress in Earth and Planetary Science, Vol 5, Iss 1, Pp 1-30 (2018)
Abstract Asteroid (162173) Ryugu is the target object of Hayabusa2, an asteroid exploration and sample return mission led by Japan Aerospace Exploration Agency (JAXA). Ground-based observations indicate that Ryugu is a C-type near-Earth asteroid with
Externí odkaz:
https://doaj.org/article/c8ae8958edec4f278d4bdfaf8a5de642
Autor:
L. Canonica, L. Marini, Kevin Hickerson, J. Schmidt, Massimiliano Clemenza, Carlo Cosmelli, S. Copello, L. Gladstone, M. Guerzoni, L. Ma, J. Johnston, A. Leder, M. Iannone, Irene Nutini, Paolo Carniti, Vladimir Datskov, R. J. Creswick, M. M. Deninno, G. Fantini, F. Bellini, I. C. Bandac, Yu-Gang Ma, D. Santone, V. Sharma, C. Brofferio, P. J. Mosteiro, A. Caminata, Ezio Previtali, B. Welliver, Evelyn Ferri, H. Z. Huang, G. Keppel, K. E. Lim, X. G. Cao, F. Bragazzi, Ettore Fiorini, V. Novati, C. Rusconi, N. Chott, T. Wise, C. Crescentini, R. Gaigher, L. Zanotti, Andrea Giachero, C. Maiano, N. Moggi, C. Martinez Amaya, S. S. Nagorny, A. Pelosi, G. Piperno, D. Q. Adams, L. Risegari, K. Alfonso, F. Terranova, Davide Chiesa, C. Rosenfeld, Deqing Fang, S. Pagan, S. Dell'Oro, M. L. Di Vacri, D. Mayer, Samuele Sangiorgio, Stefano Nisi, P. T. Surukuchi, S. Morganti, S. Zucchelli, J. Camilleri, A. Nucciotti, M. Sisti, P. Gorla, E. V. Hansen, F. Ferroni, C. Tomei, Elena Sala, L. Ioannucci, D. Speller, F. Alessandria, M. I. Martínez, Eugene E. Haller, C. Alduino, F. Rimondi, G. Ceruti, K. Wilson, L. Taffarello, Marisa Pedretti, R. Hennings-Yeomans, S. Pirro, Carlo Ligi, M. Faverzani, M. Beretta, Y. Mei, M. Tessaro, Jeffrey W. Beeman, M. Capodiferro, A. Bersani, N. D. Scielzo, M. Barucci, L. Cappelli, D. Biare, C. J. Davis, A. Camacho, Jonathan Ouellet, D. Conventi, J. Wallig, K. M. Heeger, L. Pagnanini, A. Giuliani, G. Bari, M. Cariello, Lindley Winslow, A. Campani, S. L. Wagaarachchi, M. Maino, Guoqiang Zhang, M. Carrettoni, R. Mazza, A. Branca, A. Bryant, J. Nikkel, C. Pira, H.W. Wang, M. Perego, T. I. Banks, S. Zimmermann, Ke Han, Reina H. Maruyama, S. Ghislandi, T. O'Donnell, S. Di Domizio, Simone Capelli, R. W. Kadel, Stuart J. Freedman, G. Ventura, A. Drobizhev, C. Bulfon, C. Zarra, Laura Cardani, V. Dompè, M. Balata, L. Di Paolo, A. D'Addabbo, L. Pattavina, B. K. Fujikawa, Stefano Pozzi, Alan R. Smith, D. Orlandi, Larissa M. Ejzak, M. Vignati, B. X. Zhu, V. Pettinacci, L. Kogler, E. Celi, L. Tatananni, S.H. Fu, E. Andreotti, M. A. Franceschi, R. Cereseto, I. Dafinei, M. Sakai, D. D'Aguanno, F. Stivanello, R. G. Huang, D. Schaeffer, C. Guandalini, F. Orio, Vasundhara Singh, B. Schmidt, B. S. Wang, O. Azzolini, Kai Vetter, M. Olcese, Jeremy S. Cushman, V. Palmieri, Eric B. Norman, M. Guetti, T. Napolitano, M. Biassoni, F. Del Corso, R. Faccini, Giovanni Benato, A. Buccheri, C. Salvioni, Yu. G. Kolomensky, R. Pedrotta, Lorenzo Cassina, C. Nones, A. Puiu, Marco Pallavicini, S. Quitadamo, G. Pessina, James R. Wilson, R. Liu, Massimiliano Nastasi, M. Pavan, E. Olivieri, L. Gironi, F. T. Avignone, Claudio Gotti, N. Casali, F. Reindl, Oliviero Cremonesi, J. Goett, M. Tenconi, C. Pagliarone, C. Rossi, A. Chiarini, C. Bucci, T. D. Gutierrez
Publikováno v:
Prog.Part.Nucl.Phys.
Prog.Part.Nucl.Phys., 2022, 122, pp.103902. ⟨10.1016/j.ppnp.2021.103902⟩
Prog.Part.Nucl.Phys., 2022, 122, pp.103902. ⟨10.1016/j.ppnp.2021.103902⟩
The past few decades have seen major developments in the design and operation of cryogenic particle detectors. This technology offers an extremely good energy resolution - comparable to semiconductor detectors - and a wide choice of target materials,
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fa67cdb4d76d60897c179355be535a70
http://hdl.handle.net/10281/329673
http://hdl.handle.net/10281/329673
Autor:
Raffaella Fontana, Jan Blažek, Diane Kunzelman, M. Barucci, Enrico Pampaloni, Alice Dal Fovo, Jana Striova, C. Ruberto
Publikováno v:
Angewandte Chemie International Edition. 57:7408-7412
A concise insight into the outputs provided by the latest prototype of visible-near infrared (Vis-NIR) multispectral scanner (National Research Council-National Institute of Optics, CNR-INO, Italy) is presented. The analytical data acquired on an oil
Autor:
Jana Striova, M. Barucci, M. Raffaelli, Enrico Pampaloni, A. Dal Fovo, V. Fontani, Raffaella Fontana
Publikováno v:
Microchemical Journal. 138:65-71
Contemporary art is particularly delicate as the synthetic materials used for their realization are of poorer quality and durability than the traditional materials. It follows that the contemporary artworks often require imminent restorations as well
Akademický článek
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Autor:
M. Marongiu, M. Barucci, J. Blazek, S Bracci, R. Fontana, E. Pampaloni, M. Raffaelli, C. Riminesi, J.Striova
Publikováno v:
Michelangelo Arte-Materia-Lavoro, edited by Alessandro Nova e Vitale Zanchettin, pp. 169–179. Venezia: Marsilio, 2019
info:cnr-pdr/source/autori:M. Marongiu, M. Barucci, J. Blazek, S Bracci, R. Fontana, E. Pampaloni, M. Raffaelli, C. Riminesi, J.Striova/titolo:Nuove indagini storiche e strumentali sulla sovrapposizione dei segni. Nel disegno 106° della Casa Buonarroti/titolo_volume:Michelangelo Arte-Materia-Lavoro/curatori_volume:Alessandro Nova e Vitale Zanchettin/editore: /anno:2019
info:cnr-pdr/source/autori:M. Marongiu, M. Barucci, J. Blazek, S Bracci, R. Fontana, E. Pampaloni, M. Raffaelli, C. Riminesi, J.Striova/titolo:Nuove indagini storiche e strumentali sulla sovrapposizione dei segni. Nel disegno 106° della Casa Buonarroti/titolo_volume:Michelangelo Arte-Materia-Lavoro/curatori_volume:Alessandro Nova e Vitale Zanchettin/editore: /anno:2019
Indagini non-invasive sul disegno 106A di Michelangelo Buonarroti per lo studio delle sovrapposizioni
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::271e20a4a24bd4bea0e4b91bf7e269b5
https://openportal.ispc.cnr.it/doc?id=people______::271e20a4a24bd4bea0e4b91bf7e269b5
https://openportal.ispc.cnr.it/doc?id=people______::271e20a4a24bd4bea0e4b91bf7e269b5
Autor:
R. Gaigher, Massimiliano Clemenza, Carlo Cosmelli, Marisa Pedretti, M. M. Deninno, C. Nones, F. Rimondi, R. Cereseto, I. Dafinei, C. Brofferio, G. Pessina, K. Wilson, Davide Chiesa, A. Caminata, Ezio Previtali, Marco Pallavicini, Jonathan Ouellet, Y. G. Ma, G. Bari, B. Welliver, C. Crescentini, H. Z. Huang, Jeffrey W. Beeman, M. Capodiferro, N. D. Scielzo, G. Keppel, K. E. Lim, E. V. Hansen, A. Bersani, Lucia Canonica, Stefano Dell'Oro, J. Schmidt, L. Ioannucci, S. Di Domizio, V. Pettinacci, F. Bellini, X. Liu, N. Casali, D. D'Aguanno, L. Gladstone, F. Bragazzi, D. Schaeffer, A. Giuliani, M. Guerzoni, P. J. Mosteiro, J. Wallig, C. Maiano, C. Zarra, Laura Cardani, I. C. Bandac, S. S. Nagorny, M. Pavan, R. J. Creswick, N. Chott, B. K. Fujikawa, C. Rusconi, R. Hennings-Yeomans, S. L. Wagaarachchi, Eric B. Norman, C. Pagliarone, M. Vignati, B. X. Zhu, C. Martinez Amaya, C. Arnaboldi, Lindley Winslow, R. W. Kadel, Stefano Zucchelli, S. Zimmermann, K. Alfonso, F. Reindl, M. L. Di Vacri, M. Maino, C. Rossi, M. Faverzani, M. Iannone, C. Bucci, T. D. Gutierrez, Miriam Lucio Martinez, Irene Nutini, Vladimir Datskov, B. S. Wang, G. Ventura, L. Tatananni, A. Chiarini, F. Stivanello, S. Copello, T. I. Banks, Paolo Carniti, C. Bulfon, M. Balata, L. Pattavina, C. Salvioni, L. Zanotti, Jeremy S. Cushman, L. Gironi, G. Piperno, M. Tenconi, F. T. Avignone, F. Orio, Claudio Gotti, M. Cariello, L. Taffarello, B. Schmidt, V. Novati, Virendra Singh, Oliviero Cremonesi, J. Goett, Guimin Zhang, Y. Mei, C. Pira, M. Tessaro, E. Andreotti, O. Azzolini, L. Di Paolo, A. D'Addabbo, Larissa M. Ejzak, M. Sakai, Silvia Capelli, S. Pirro, Xi-Guang Cao, Massimiliano Nastasi, Carlo Ligi, M. Barucci, D. Biare, K. M. Heeger, M. Carrettoni, C. Rosenfeld, P. Gorla, F. Ferroni, C. Tomei, A. Bryant, Emanuele Ferri, Eugene E. Haller, G. Ceruti, C. J. Davis, A. Camacho, L. Kogler, S. Morganti, F. Terranova, S. Pozzi, E. Olivieri, James R. Wilson, E. Fiorini, A. Pelosi, Alan R. Smith, Ke Han, A. Branca, Reina H. Maruyama, N. Moggi, H. W. Wang, Stuart J. Freedman, T. O'Donnell, A. Leder, L. Risegari, Samuele Sangiorgio, Stefano Nisi, T. Wise, A. Nucciotti, M. Sisti, C. Alduino, D. Santone, Yu. G. Kolomensky, Luigi Cappelli, F. Alessandria, R. Pedrotta, D. Conventi, L. Marini, Kevin Hickerson, C. Guandalini, E. Sala, V. Palmieri, A. Giachero, T. Napolitano, D. Q. Fang, M. Biassoni, A. Buccheri, M. Olcese, F. Del Corso, R. Faccini, Giovanni Benato, L. Cassina, A. Drobizhev, D. Orlandi, M. A. Franceschi
Publikováno v:
Physical Review Letters. 120
The CUORE experiment, a ton-scale cryogenic bolometer array, recently began operation at the Laboratori Nazionali del Gran Sasso in Italy. The array represents a significant advancement in this technology, and in this work we apply it for the first t