Zobrazeno 1 - 10
of 113
pro vyhledávání: '"Sultan B Dabagov"'
Autor:
Leonardo Severini, Alessia D’Andrea, Martina Redi, Sultan B. Dabagov, Valeria Guglielmotti, Dariush Hampai, Laura Micheli, Rocco Cancelliere, Fabio Domenici, Claudia Mazzuca, Gaio Paradossi, Antonio Palleschi
Publikováno v:
Gels, Vol 9, Iss 7, p 509 (2023)
One of the main issues in the cultural heritage field of restoration chemistry is the identification of greener and more effective methods for the wet cleaning of paper artefacts, which serve as witnesses to human history and custodians of cultural v
Externí odkaz:
https://doaj.org/article/ebbf56a0b6454999bd30b4188956163e
Autor:
Sultan B Dabagov, Luigi Palumbo
The book “Channeling 2008”, Charged and Neutral Particles Channeling Phenomena, is formed by the same title conference contributions. This volume includes papers by leading researchers from different world centers. Their recent results on the coh
Publikováno v:
International Journal of Smart Education and Urban Society. 13:1-14
Focusing on the approach for developing professional skills, this paper is dedicated to the University on-line education as a pedagogical tool for material science and solid state physics as well. Two strategies described within the comparative analy
Publikováno v:
Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques. 15:513-519
We have experimentally and theoretically characterised silicon-glass Micro-Channel Plate (MCP) devices doped with cobalt atoms. Under anomalous scattering condition near the SiL-edges and CoK-edge we have proved the coherent excitation and the axial
Autor:
Sultan B. Dabagov
Publikováno v:
Proceedings, Vol 26, Iss 1, p 40 (2019)
Channeling is the phenomenon well-known in the physics world mostly related to the propagation of the beams of charged particles in aligned crystals. [...]
Externí odkaz:
https://doaj.org/article/37dd8162093e4d31a5bab030a2b6e5cb
Autor:
Giorgio Cappuccio, Giannantonio Cibin, Sultan B. Dabagov, Alfredo Di Filippo, Gianluca Piovesan, Dariush Hampai, Valter Maggi, Augusto Marcelli
Publikováno v:
Condensed Matter, Vol 3, Iss 4, p 33 (2018)
In this work, we will report applications of the total external X-ray fluorescence (TXRF) station, a prototype assembled at the XLab Frascati laboratory (XlabF) at the INFN National Laboratories of Frascati (INFN LNF). XlabF has been established as a
Externí odkaz:
https://doaj.org/article/795e56f8bc3549f28f2d44d2848094fb
Autor:
P. Bloom, P. Kammel, Timothy Chupp, C. Schlesier, P. Girotti, M. J. Lee, A. Nath, Frederick Gray, C. Gabbanini, D. Shemyakin, C. C. Polly, L. Cotrozzi, V. N. Duginov, G. Venanzoni, T. Stuttard, G. Lukicov, M. Iacovacci, H. E. Swanson, T. P. Gorringe, B. C.K. Casey, J. Grange, N. H. Tran, K. W. Hong, K. T. Pitts, R. T. Chislett, Fabrizio Marignetti, A. Lucà, Martin Fertl, E. Barlas-Yucel, J. George, A. Kuchibhotla, Dariush Hampai, T. Walton, D. Cauz, G. Sweetmore, J. Bono, I. R. Bailey, Dinko Pocanic, J. L. Holzbauer, Gavin Grant Hesketh, J. L. Ritchie, Alexander Keshavarzi, H. P. Binney, A. García, Manolis Kargiantoulakis, A. Basti, Barry King, B. MacCoy, M. Kiburg, David Rubin, Alexey Anisenkov, V. Tishchenko, Marin Karuza, H. Nguyen, P. Di Meo, Claudio Ferrari, N. Kinnaird, Liang Li, L. K. Gibbons, N. Raha, R. Chakraborty, D. Flay, R. N. Pilato, M. Incagli, M. Lancaster, Michael Syphers, S. Baeßler, T. J. V. Bowcock, J. LaBounty, G. M. Piacentino, D. Vasilkova, S. Park, A. Lusiani, T. Albahri, R. Madrak, Z. Hodge, Dominik Stöckinger, A. Chapelain, Brad Plaster, R. M. Carey, Dongdong Li, J. D. Crnkovic, D. W. Hertzog, Selcuk Haciomeroglu, J. P. Miller, Andrzej Wolski, Tabitha Halewood-leagas, Franco Bedeschi, B. L. Roberts, S. Grant, J. Fry, Kyoko Makino, J.B. Hempstead, S. Di Falco, K. S. Khaw, W. Turner, Z. Chu, A. T. Herrod, J. D. Price, T. Barrett, N. V. Khomutov, M. Farooq, P. Winter, J. Stapleton, R. Fatemi, D. Kawall, S. Charity, L. Santi, A. Schreckenberger, E. Valetov, B. Quinn, Yannis K. Semertzidis, B. Li, K. L. Giovanetti, A. E. Tewsley-Booth, S. Lee, Ran Hong, S. Leo, M. D. Galati, A.T. Fienberg, Sultan B. Dabagov, S. P. Chang, L. Kelton, G. Pauletta, Rachel Osofsky, G. Di Sciascio, S. Ganguly, D.A. Sweigart, Meghna Bhattacharya, Thomas Teubner, A. Gioiosa, S. Miozzi, B. Kiburg, J. Esquivel, A. Lorente Campos, David Kessler, E. Bottalico, M. Sorbara, Christopher Stoughton, J. Mott, Kayleigh Anne Thomson, Giovanni Cantatore, A. Fioretti, A. Anastasi, Wanwei Wu, Karie Badgley, S. Mastroianni, O. Kim, William Morse, L. Welty-Rieger, A. L. Lyon, A. Hibbert, A. Weisskopf, P. T. Debevec, W. Gohn, E. J. Ramberg, R. Di Stefano, E. Kraegeloh, Martin Berz, Z. Khechadoorian, S. Ramachandran, D. Stratakis, S. Corrodi, D. A. Tarazona, V. A. Baranov, J. Choi, F. Han, Nicholas A. Pohlman, M. Eads, I. Logashenko, N. A. Kuchinskiy, M. W. Smith, Y. I. Kim, A. Driutti, J. Kaspar, K. R. Labe, N. S. Froemming, E. Frlež
Publikováno v:
Physical Review
Lancaster, M 2021, ' Measurement of the anomalous precession frequency of the muon in the Fermilab Muon g-2 experiment ', Physical Review D: Particles, Fields, Gravitation and Cosmology, vol. 103, no. 7, 072002 . https://doi.org/10.1103/PhysRevD.103.072002
PHYSICAL REVIEW D
Lancaster, M 2021, ' Measurement of the anomalous precession frequency of the muon in the Fermilab Muon g-2 experiment ', Physical Review D: Particles, Fields, Gravitation and Cosmology, vol. 103, no. 7, 072002 . https://doi.org/10.1103/PhysRevD.103.072002
PHYSICAL REVIEW D
The Muon g-2 Experiment at Fermi National Accelerator Laboratory (FNAL) has measured the muon anomalous precession frequency $\omega_a$ to an uncertainty of 434 parts per billion (ppb), statistical, and 56 ppb, systematic, with data collected in four
Beam dynamics corrections to the Run-1 measurement of the muon anomalous magnetic moment at Fermilab
Autor:
K. S. Khaw, C. Schlesier, Diktys Stratakis, R. Fatemi, S. Corrodi, D. Newton, K. T. Pitts, R. T. Chislett, L. K. Gibbons, Kyoko Makino, E. Bottalico, A. Gioiosa, J. LaBounty, J. Bono, I. R. Bailey, P. Kammel, D. Kawall, T. J. V. Bowcock, H. P. Binney, W. Turner, A. T. Herrod, S. Miozzi, A. Schreckenberger, E. Valetov, N. H. Tran, K. W. Hong, J. Esquivel, M. Sorbara, Christopher Stoughton, Fabrizio Marignetti, A. Lucà, L. Kelton, M. Eads, D. Stöckinger, T. Barrett, G. Piacentino, J. Mott, S. Baeßler, Bck Casey, Kayleigh Anne Thomson, Giovanni Cantatore, Rachel Osofsky, M. Kiburg, E. Barlas-Yucel, Michael Syphers, C. C. Polly, J. Choi, R. Chakraborty, D. Flay, David Rubin, J. Grange, N. A. Kuchinskiy, M. W. Smith, G. Lukicov, M. Iacovacci, G. Pauletta, J. L. Ritchie, B. MacCoy, L. Cotrozzi, V. N. Duginov, A. Lorente Campos, S. Lee, Ran Hong, G. Sweetmore, D.A. Sweigart, M. Korostelev, Dongdong Li, D. W. Hertzog, Alexander Keshavarzi, G. Di Sciascio, Alejandro L. Garcia, Liang Li, F. Han, D. Sathyan, A.T. Fienberg, Sultan B. Dabagov, M. J. Lee, S. P. Chang, Benjamin T. King, Marin Karuza, R. N. Pilato, M. Incagli, J.B. Hempstead, B. Quinn, L. Santi, N. Kinnaird, F. Gray, P. Winter, L. Welty-Rieger, Meghna Bhattacharya, H. Nguyen, P. Di Meo, T. Stuttard, A. L. Lyon, David Kessler, A. Chapelain, J. Kaspar, B. Li, Galati, Sudeshna Ganguly, Andrzej Wolski, A. Driutti, D. A. Tarazona, Brad Plaster, R. M. Carey, D. Cauz, G. Venanzoni, J. Fry, B. Kiburg, J. P. Miller, W. Gohn, B. L. Roberts, S. Grant, V. A. Baranov, Nicholas A. Pohlman, N. V. Khomutov, M. Farooq, Jason Crnkovic, A. Hibbert, K. R. Labe, P. T. Debevec, Thomas Teubner, S. Di Falco, J. D. Price, Yi Kim, I.B. Logashenko, Yannis K. Semertzidis, K. L. Giovanetti, A. E. Tewsley-Booth, E. Frlež, Martin Berz, S. Charity, T. Walton, Z. Khechadoorian, S. Ramachandran, A. Fiedler, T. P. Gorringe, William Morse, A. Fioretti, A. Anastasi, O. Kim, A. Weisskopf, Wanwei Wu, Karie Badgley, S. Mastroianni, J. L. Holzbauer, Manolis Kargiantoulakis, S. Park, A. Lusiani, T. Albahri, R. Madrak, Selcuk Haciomeroglu, Z. Chu, Dariush Hampai, Gavin Grant Hesketh, J. George, Tishchenko, D. Vasilkova, Franco Bedeschi, P. Bloom, Timothy Chupp, P. Girotti, Nathan Froemming, J. Stapleton, Dinko Pocanic, M. Lancaster, C. Gabbanini, N. Raha, H. E. Swanson, Martin Fertl, Z. Hodge, Tabitha Halewood-leagas, E. J. Ramberg, A. Nath, R. Di Stefano, E. Kraegeloh, Claudio Ferrari
Publikováno v:
Phys. Rev. Accel. Beams
Physical Review Accelerators and Beams
Lancaster, M 2021, ' Beam dynamics corrections to the Run-1 measurement of the muon anomalous magnetic moment at Fermilab ', Physical Review Accelerators and Beams . https://doi.org/10.1103/PhysRevAccelBeams.24.044002
Physical Review Accelerators and Beams
Lancaster, M 2021, ' Beam dynamics corrections to the Run-1 measurement of the muon anomalous magnetic moment at Fermilab ', Physical Review Accelerators and Beams . https://doi.org/10.1103/PhysRevAccelBeams.24.044002
This paper presents the beam dynamics systematic corrections and their uncertainties for the Run-1 data set of the Fermilab Muon g-2 Experiment. Two corrections to the measured muon precession frequency $\omega_a^m$ are associated with well-known eff
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::f0cacb5ab27667b46828b095e5f2d2d7
Autor:
A. Lorusso, M. B. Danailov, Massimo Ferrario, Sultan B. Dabagov, J. Scifo, Enrica Chiadroni, Paolo Cinquegrana, A. Perrone, D. Garzella, Dariush Hampai, M. Trovo, Alexander Demidovich, Anna Giribono
Publikováno v:
Phys.Rev.Accel.Beams
Phys.Rev.Accel.Beams, 2020, 23 (12), pp.123401. ⟨10.1103/PhysRevAccelBeams.23.123401⟩
Physical Review Accelerators and Beams, Vol 23, Iss 12, p 123401 (2020)
Phys.Rev.Accel.Beams, 2020, 23 (12), pp.123401. ⟨10.1103/PhysRevAccelBeams.23.123401⟩
Physical Review Accelerators and Beams, Vol 23, Iss 12, p 123401 (2020)
The present work reports on Yttrium based photocathodes. A Yttrium (Y) thin film is deposited via pulsed laser deposition (PLD) on the copper (Cu) back flange of a radio frequency (rf) gun for photocathode application. Because of a lower work functio
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::d1e10d64da943b88d17ead4a2868d331
https://hal.science/hal-03191161
https://hal.science/hal-03191161
Autor:
G. Piacentino, P. Di Meo, Fabrizio Marignetti, A. Nath, Dariush Hampai, G. Pauletta, Claudio Ferrari, D. Cauz, A. Anastasio, Marin Karuza, M. Incagli, Giovanni Cantatore, A. Gioiosa, R. Di Stefano, A. Driutti, Franco Bedeschi, A. Lusiani, A. Boiano, G. Di Sciascio, G. Venanzoni, M. Iacovacci, S. Mastroianni, G. Corradi, C. Gabbanini, A. Fioretti, L. Santi, Sultan B. Dabagov
The Muon g-2 Experiment at Fermilab (E989) will measure the muon magnetic anomaly with unprecedented precision (0.14 ppm), which yields a factor of 4 improvement with respect to the previous measurements at Brookhaven National Laboratory (BNL) (E821)
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::85592526fd145911ea8e87755fa3d95c
http://hdl.handle.net/11695/111269
http://hdl.handle.net/11695/111269