Zobrazeno 1 - 10
of 39
pro vyhledávání: '"H. Derking"'
Autor:
R. Vaccarone, S. Lehner, C. Regenfus, Paola Scampoli, James William Storey, M. A. Subieta Vasquez, A. Gligorova, V. Lagomarsino, C. Pistillo, F. Merkt, Ruggero Caravita, S. D. Hogan, Claude Amsler, P. Nédélec, M. Špaček, Davide Trezzi, Tomoko Ariga, G. Cerchiari, Nicola Pacifico, Heidi Sandaker, E. Jordan, S. Di Domizio, J. Bremer, Rafael Ferragut, S. Mariazzi, Alexey Dudarev, Giovanni Consolati, Marco Giammarchi, Germano Bonomi, T. Huse, Ole Røhne, Jiro Kawada, L. Di Noto, S. Haider, J. H. Derking, M. Kimura, D. Krasnický, Marco Prevedelli, Fabrizio Castelli, G. Testera, Cristina Riccardi, O. Ahlén, Michael Doser, Alban Kellerbauer, Sergei Gninenko, E. Widmann, A. Knecht, Johann Zmeskal, P. Genova, Antonio Ereditato, D. Comparat, Carlo Canali, Andrea Fontana, Thomas Kaltenbacher, Simone Cialdi, S. Zavatarelli, Akitaka Ariga, Stefano Aghion, Chloé Malbrunot, V. A. Matveev, V. Petráček, Alberto Rotondi, L. V. Jørgensen, L. Cabaret, R. S. Brusa, F. Prelz, G. Nebbia, A. S. Belov, P. Bräunig, F. Moia, M. Oberthaler
Publikováno v:
Hyperfine Interactions. 228:121-131
The AEgIS experiment aims at performing the first test of the Weak Equivalence Principle of General Relativity in the antimatter sector by measuring the gravitational acceleration acting on a beam of cold antihydrogen to a precision of 1 %. The insta
Publikováno v:
IOP Conference Series: Materials Science and Engineering. 755:012145
The High-Luminosity LHC project (HL–LHC), aiming at peak luminosity above 5.0 × 1034 cm −2 s −1, considers replacing the matching sections on both sides of the ATLAS and CMS experiments. To complement new focusing quadrupoles, this upgrade con
Autor:
Markus K. Oberthaler, M. Kimura, S. Di Domizio, Marco Giammarchi, N. Pacifico, Marco Prevedelli, P. Nedelec, C. Pistillo, F. Prelz, Ruggero Caravita, Alban Kellerbauer, P. Genova, O. Ahlén, G. Nebbia, L. Cabaret, Viktor Matveev, Simone Cialdi, F. Moia, Paola Scampoli, James William Storey, M. A. Subieta Vasquez, E. Jordan, P. Bräunig, Carlo Canali, Daniel Comparat, G. Testera, T. Huse, Thomas Kaltenbacher, A. S. Belov, Sebastiano Mariazzi, R. S. Brusa, Claude Amsler, R. Vaccarone, Vojtech Petracek, Akitaka Ariga, S. N. Gninenko, Sebastian Lehner, Giovanni Cerchiari, Fabrizio Castelli, A. Knecht, C. Malbrunot, Angela Gligorova, Sandra Zavatarelli, Michael Doser, Antonio Ereditato, Giovanni Consolati, Germano Bonomi, M. Spacek, Johann Zmeskal, Adriano Fontana, D. Krasnický, Karl Berggren, Stefano Aghion, H. Derking, C. Regenfus, J. Bremer, Alexey Dudarev, Ole Røhne, A. Magnani, Tomoko Ariga, Jiro Kawada, L. Di Noto, Rafael Ferragut, S. Haider, Eberhard Widmann, V. Lagomarsino, Alberto Rotondi, L. V. Jørgensen, Heidi Sandaker, C. Riccardi
Publikováno v:
Amsler, Claude; Ariga, Akitaka; Ariga, Tomoko; Ereditato, Antonio; Kawada, Jiro; Kimura, Mitsuhiro; Pistillo, Ciro; Scampoli, Paola; Storey, James William (2014). A moiré deflectometer for antimatter. Nature communications, 5(1) Nature Publishing Group 10.1038/ncomms5538
Nature Communications
Nature Communications, Nature Publishing Group, 2014, 5, pp.4538. ⟨10.1038/ncomms5538⟩
Nature Communications
Nature Communications, Nature Publishing Group, 2014, 5, pp.4538. ⟨10.1038/ncomms5538⟩
The precise measurement of forces is one way to obtain deep insight into the fundamental interactions present in nature. In the context of neutral antimatter, the gravitational interaction is of high interest, potentially revealing new forces that vi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4255a2b8a031220f202b99b73c4f63fd
https://boris.unibe.ch/68653/1/ncomms5538.pdf
https://boris.unibe.ch/68653/1/ncomms5538.pdf
Autor:
A. Perin, K. Iakovidis, J. H. Derking, T. Dupont, T. Barbe, B. D'Hulster, L. Stewart, M. Pezzetti
Publikováno v:
IOP Conference Series: Materials Science and Engineering. 502:012005
CERN has built a new test facility for large and heavy superconducting devices that will be first used for testing the Super-FRS magnets of the FAIR project being built at GSI in Germany. This paper reports on the commissioning results and performanc
Autor:
S. N. Gninenko, Jiro Kawada, L. Di Noto, P. Genova, Alexey Dudarev, Eberhard Widmann, V. Lagomarsino, F. Prelz, V. Petráček, Giovanni Consolati, Germano Bonomi, Akitaka Ariga, Paola Scampoli, M. A. Subieta Vasquez, M. Spacek, Patrick Nedelec, Heidi Sandaker, Johann Zmeskal, O. Ahlén, A. Rotondi, Claude Amsler, Marco Prevedelli, Ole Røhne, Daniel Comparat, Giovanni Cerchiari, N. Pacifico, H. Derking, Stefano Aghion, C. Pistillo, L. V. Jørgensen, Ruggero Caravita, Adriano Fontana, Simone Cialdi, E. Jordan, M. Kimura, L. Cabaret, T. Huse, J. Bremer, A. S. Belov, Tomoko Ariga, Rafael Ferragut, Cristina Riccardi, T. Kaltenbacher, Carlo Canali, Antonio Ereditato, Sebastian Lehner, C. Regenfus, P. Bräunig, M. Oberthaler, Angela Gligorova, P. Yzombard, G. Testera, D. Krasniký, S. Haider, R. S. Brusa, Karl Berggren, Fabrizio Castelli, Alice Magnani, Michael Doser, Viktor Matveev, J. Storet, S. Di Domizio, Marco Giammarchi, Alban Kellerbauer, G. Nebbia, C. Malbrunot, Sebastiano Mariazzi, A. Knecht, S. Zavaterelli
Publikováno v:
Amsler, Claude; Ariga, Akitaka; Ariga, Tomoko; Ereditato, Antonio; Kawada, Jiro; Kimura, Mitsuhiro; Pistillo, Ciro; Scampoli, Paola; Storey, James William (2014). Measuring GBAR with emulsion detector. International Journal of Modern Physics: Conference Series, 30(1460268), p. 1460268. 10.1142/S2010194514602683
International Journal of Modern Physics: Conference Series
International Journal of Modern Physics:Conference series
2nd International Workshop on Antimatter and Gravity (WAG 2013)
2nd International Workshop on Antimatter and Gravity (WAG 2013), 2013, Bern, Switzerland. pp.1460268, ⟨10.1142/S2010194514602683⟩
International Journal of Modern Physics: Conference Series
International Journal of Modern Physics:Conference series
2nd International Workshop on Antimatter and Gravity (WAG 2013)
2nd International Workshop on Antimatter and Gravity (WAG 2013), 2013, Bern, Switzerland. pp.1460268, ⟨10.1142/S2010194514602683⟩
The motivation of the AEgIS experiment is to test the universality of free fall with antimatter. The goal is to reach a relative uncertainty of 1% for the measurement of the earth's gravitational acceleration [Formula: see text] on an antihydrogen be
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ac2a17586cdfcc11ea7a4767391ac551
http://hdl.handle.net/11567/777568
http://hdl.handle.net/11567/777568
Autor:
D. Krasnick?, S. Aghion, O. Ahl?n, C. Amsler, A. Ariga, T. Ariga, A. S. Belov, K. Berggren, G. Bonomi, P. Br?unig, J. Bremer, R. S. Brusa, L. Cabaret, C. Canali, R. Caravita, F. Castelli, G. Cerchiari, S. Cialdi, D. Comparat, G. Consolati, H. Derking, S. Di Domizio, L. Di Noto, M. Doser, A. Dudarev, A. Ereditato, R. Ferragut, A. Fontana, P. Genova, M. Giammarchi, A. Gligorova, S. N. Gninenko, S. Haider, T. Huse, E. Jordan, L. V. J?rgensen, T. Kaltenbacher, J. Kawada, A. Kellerbauer, M. Kimura, A. Knecht, V. Lagomarsino, S. Lehner, A. Magnani, C. Malbrunot, S. Mariazzi, V. A. Matveev, G. Nebbia, P. N?d?lec, M. K. Oberthaler, N. Pacifico, V. Petr??ek, C. Pistillo, F. Prelz, M. Prevedelli, C. Regenfus, C. Riccardi, O. R?hne, A. Rotondi, H. Sandaker, J. Storey, M. A. Subieta Vasquez, M. ?pa?ek, G. Testera, E. Widmann, P. Yzombard, S. Zavatarelli, J. Zmeskal, SCAMPOLI, PAOLA
AE¯gIS experiment’s main goal is to measure the local gravitational acceleration of antihydrogen ¯g and thus perform a direct test of the weak equivalence principle with antimatter. In the first phase of the experiment the aim is to measure ¯g w
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::2c42a771c45312b1b47f6d645f1d1974
http://hdl.handle.net/11311/868417
http://hdl.handle.net/11311/868417
Autor:
L. Bravina, M. A. Subieta Vasquez, S. Aghion, O. Ahlén, C. Amsler, A. Ariga, T. Ariga, A. S. Belov, G. Bonomi, P. Bräunig, J. Bremer, R. S. Brusa, L. Cabaret, M. Caccia, C. Canali, R. Caravita, F. Castelli, G. Cerchiari, S. Cialdi, D. Comparat, G. Consolati, L. Dassa, J. H. Derking, S. Di Domizio, L. Di Noto, M. Doser, A. Dudarev, A. Ereditato, R. Ferragut, A. Fontana, P. Genova, M. Giammarchi, A. Gligorova, S. N. Gninenko, S. Heider, S. D. Hogan, T. Huse, E. Jordan, L. V. Jørgensen, T. Kaltenbacher, J. Kawada, A. Kellerbauer, M. Kimura, A. Knecht, D. Krasnický, V. Lagomarsino, S. Mariazzi, V. A. Matveev, F. Merkt, F. Moia, G. Nebbia, P. Nédélec, M. K. Oberthaler, N. Pacifico, V. Petráček, C. Pistilo, F. Prelz, M. Prevedelli, C. Regenfus, C. Ricardi, O. Røhne, A. Rotondi, H. Sandaker, J. Storey, M. Špaček, G. Testera, D. Trezzi, R. Vaccarone, F. Villa, S. Zavatarelli, Y. Foka, S. Kabana, SCAMPOLI, PAOLA
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______3730::587805cfce84c605ba096668d9cc0203
http://hdl.handle.net/11588/609667
http://hdl.handle.net/11588/609667
Autor:
O. Ahlén, R. S. Brusa, Marco Prevedelli, G. Nebbia, Massimo Caccia, V. Petráček, V. Lagomarsino, Alban Kellerbauer, Sebastiano Mariazzi, L. Di Noto, P. Genova, Patrick Nedelec, Carsten Welsch, Carlo Canali, L. Cabaret, Giovanni Cerchiari, T. Huse, Alberto Rotondi, J. Bremer, C. Regenfus, J. Harasimowicz, Ole Røhne, Heidi Sandaker, Alice Magnani, Cristina Riccardi, G. Testera, F. Prelz, Simone Cialdi, D. Krasnický, T. Kaltenbacher, S. Haider, E. Jordan, Adriano Fontana, Rafael Ferragut, M. A. Subieta Vasquez, Fabrizio Castelli, S. Di Domizio, A. S. Belov, Alexey Dudarev, N. Pacifico, Michael Doser, Daniel Comparat, A. Knecht, A. Sosa, Stefano Aghion, Sandra Zavatarelli, Marco Giammarchi, L. V. Jørgensen, P. Bräunig, Angela Gligorova, Ruggero Caravita, V. A. Matveev, S. N. Gninenko, F. Moia, G. Burghart, Giovanni Consolati, Germano Bonomi, J. H. Derking, M. Spacek
Publikováno v:
Journal of Instrumentation
Journal of Instrumentation, IOP Publishing, 2014, 9, pp.P06020. ⟨10.1088/1748-0221/9/06/P06020⟩
P06020
Journal of Instrumentation, IOP Publishing, 2014, 9, pp.P06020. ⟨10.1088/1748-0221/9/06/P06020⟩
P06020
The goal of the AEḡIS experiment at the Antiproton Decelerator (AD) at CERN, is to measure directly the Earth’s gravitational acceleration on antimatter by measuring the free fall of a pulsed, cold antihydrogen beam. The final position of the fal
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::0904ea9cecf4d0642f5a16ecbad7def9
http://hdl.handle.net/11311/868406
http://hdl.handle.net/11311/868406
Autor:
A. Gligorova, R. Caravita, F. Castelli, G. Cerchiari, S. Cialdi, D. Comparat, G. Consolati, J. H. Derking, C. Da Via, S. Di Domizio, L. Di Noto, S. Aghion, M. Doser, A. Dudarev, R. Ferragut, A. Fontana, P. Genova, M. Giammarchi, S. N. Gninenko, S. Haider, H. Holmestad, T. Huse, A. S. Belov, E. Jordan, T. Kaltenbacher, A. Kellerbauer, A. Knecht, D. Krasnicky, V. Lagomarsino, S. Lehner, A. Magnani, C. Malbrunot, S. Mariazzi, G. Bonomi, V. A. Matveev, F. Moia, C. Nellist, G. Nebbia, P. Nedelec, M. Oberthaler, N. Pacifico, V. Petracek, F. Prelz, M. Prevedelli, P. Braunig, C. Riccardi, O. Rohne, A. Rotondi, H. Sandaker, M. A. Subieta Vasquez, M. Spacek, G. Testera, E. Widmann, P. Yzombard, S. Zavatarelli, J. Bremer, J. Zmeskal, R. S. Brusa, L. Cabaret, M. Caccia
Publikováno v:
IEEE Transactions on Nuclear Science
IEEE Transactions on Nuclear Science, Institute of Electrical and Electronics Engineers, 2014, 61 (6), pp.3747-3753. ⟨10.1109/TNS.2014.2368591⟩
IEEE Transactions on Nuclear Science, Institute of Electrical and Electronics Engineers, 2014, 61 (6), pp.3747-3753. ⟨10.1109/TNS.2014.2368591⟩
International audience; The principal aim of the AEgIS experiment at CERN is to measure the acceleration of antihydrogen due to Earth's gravitational field. This would be a test of the Weak Equivalence Principle, which states that all bodies fall wit
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::66a6d9346bd84a164fa832ff5da106c8
http://hdl.handle.net/11311/884384
http://hdl.handle.net/11311/884384
Publikováno v:
Transactions of the Cryogenic Engineering Conference—CEC: Advances in Cryogenic Engineering, 617-624
STARTPAGE=617;ENDPAGE=624;TITLE=Transactions of the Cryogenic Engineering Conference—CEC
STARTPAGE=617;ENDPAGE=624;TITLE=Transactions of the Cryogenic Engineering Conference—CEC
Miniature Joule-Thomson coolers were developed at the University of Twente and are able to cool to 100 K with a typical cooling power of 10 to 20 mW. These coolers have a high potential for space applications in cooling small optical detectors for fu