Results 61 to 70 of about 159,480 (286)
Nuclear Physics in the Era of Quantum Computing and Quantum Machine Learning
Advanced Quantum Technologies, Volume 8, Issue 12, December 2025.The use of QML in the realm of nuclear physics at low energy is almost nonexistent. Three examples of the use of quantum computing and quantum machine in nuclear physics are presented: the determination of the phase/shape in nuclear models, the calculation of the ground state energy, and the identification of particles in nuclear physics experiments ...José‐Enrique García‐Ramos, Álvaro Sáiz, José M. Arias, Lucas Lamata, Pedro Pérez‐Fernández +4 morewiley +1 more sourceComplete Set of Deuteron Analyzing Powers for dp Elastic Scattering at 250 MeV/nucleon and Three Nucleon Forces
EPJ Web of Conferences, 2010 Measurements of a complete set of deuteron analyzing powers (iT11, T20, T21, T22) for elastic deuteron–proton scattering at 250 MeV/nucleon have been performed with polarized deuteron beams at RIKEN RI Beam Factory.Shimizu Y., Yako K., Sakai H., Suzuki H., Okamura H., Sakaguchi S., Sasano M., Sakamoto N., Sekiguchi K., Maeda Y., Saito T., Wakasa T., Dozono M. +12 moredoaj +1 more sourceRemarks on the pion–nucleon σ-term
Physics Letters B, 2016 The pion–nucleon σ-term can be stringently constrained by the combination of analyticity, unitarity, and crossing symmetry with phenomenological information on the pion–nucleon scattering lengths. Recently, lattice calculations at the physical point have Martin Hoferichter, Jacobo Ruiz de Elvira, Bastian Kubis, Ulf-G. Meißner +3 moredoaj +1 more sourceEnergy‐Dependent SEP Fe/O Abundances During the May 2024 Superstorm
Space Weather, Volume 23, Issue 11, November 2025.Abstract
During mid‐May 2024, active region (AR) 13664 produced a series of M‐ and X‐class flares along with several coronal mass ejections (CMEs) that resulted in exceptionally strong aurora at Earth. This study presents in situ solar energetic particle (SEP) ion composition data from Solar Terrestrial Relations Observatory Ahead (STA), Advanced ...G. D. Muro, C. M. S. Cohen, Z. Xu, R. A. Leske, A. C. Cummings, S. Bale, G. D. Berland, E. R. Christian, M. E. Cuesta, M. I. Desai, F. Fraschetti, J. Giacalone, L. Y. Khoo, A. Labrador, D. J. McComas, J. G. Mitchell, M. Pulupa, N. A. Schwadron, M. M. Shen +18 morewiley +1 more sourceComplete Set of Deuteron Analyzing Powers for dp Elastic Scattering at Intermediate Energies and Three Nucleon Forces
EPJ Web of Conferences, 2014 Experimental programs with polarized deuterons beams at intermediate energies are in progress at RIKEN RI Beam Factory. We have measured a complete set of deuteron analyzing powers in deuteron–proton elastic scattering at 250 and 294 MeV/nucleon.Sekiguchi K., Okamura H., Wada Y., Miyazaki J., Taguchi T., Gebauer U., Dozono M., Kawase S., Kubota Y., Lee C. S., Maeda Y., Mashiko T., Miki K., Sakaguchi S., Sakai H., Sakamoto N., Sasano M., Shimizu Y., Takahashi K., Tang R., Uesaka T., Wakasa T., Yako K. +22 moredoaj +1 more sourceDispersion relations in real and virtual Compton scattering
, 2002 A unified presentation is given on the use of dispersion relations in the
real and virtual Compton scattering processes off the nucleon. The way in which
dispersion relations for Compton scattering amplitudes establish connections
between low energy ...Altarelli, Anselmino, Arndt, B. Pasquini, Babusci, Babusci, Baldin, Baranov, Baranov, Bass, Bass, Berg, Bernabeu, Bernabeu, Bernard, Bernard, Bernard, Bernard, Bernard, Bianchi, Birse, Bjorken, Bjorken, Bjorken, Blümlein, Boffi, Brash, Brodsky, Burkert, Burkert, Burkert, Burkert, Burkhardt, Callan, Camen, Ciofi degli Atti, Copley, Cudell, D. Drechsel, de L. Kronig, Dicus, Drechsel, Drechsel, Drechsel, Drechsel, Drechsel, Drechsel, Drell, Edelmann, Enik, Federspiel, Frazer, Galler, Gell-Mann, Gell-Mann, Gellas, Gellas, Gerasimov, Gilman, Gol'danski, Grießhammer, Guichon, Guichon, Hallin, Hand, Hanstein, Hecking, Heisenberg, Hemmert, Hemmert, Hemmert, Hemmert, Hemmert, Holstein, Holstein, Hornidge, Höhler, Hünger, Jackson, Jaffe, Ji, Ji, Ji, Ji, Klein, Koester, Kolb, Kondratyuk, Koniuk, Kossert, Kramers, L'vov, L'vov, L'vov, L'vov, Lapidus, Larin, Levchuk, Low, M. Vanderhaeghen, MacGibbon, Mandelstam, Martin, Merzbacher, Metz, Metz, Nikolenko, Nussenzveig, Oehme, Olmos de León, Pasquini, Pasquini, Pasquini, Pavan, Petrunkin, Pilkuhn, Powell, Prange, Roche, Rose, Rose, Scherer, Schmiedmayer, Schäfer, Schäfer, Simula, Thomas, Tonnison, Tsai, Vanderhaeghen, Vanderhaeghen, Vanderhaeghen, Vijaya Kumar, Wandzura, Weiner, Wess, Wissmann, Witten, Wolf, Zieger +139 morecore +1 more sourceCompton Scattering by Nuclei [PDF]
, 1999 The concept of Compton scattering by even-even nuclei from giant-resonance to
nucleon-resonance energies and the status of experimental and theoretical
researches in this field are outlined. Nuclear Compton scattering in the
giant-resonance energy-region Adler, Adler, Ahrens, Ahrens, Ahrens, Alarcon, Alberico, Anastasio, Anthony, Arenhövel, Arenhövel, Arenhövel, Arenhövel, Arenhövel, Arenhövel, Arenhövel, Arima, Arndt, Austin, Austin, Babusci, Babusci, Bar-Noy, Bar-Noy, Baranov, Barashenkov, Baron, Bauer, Baumann, Baumann, Bawin, Baym, Bentz, Berends, Bergqvist, Berman, Berman, Bernard, Bowles, Bowles, Brown, Brown, Brown, Brown, Brown, Brown, Brown, Brown, Brown, Bunatian, Bäckman, Carrasco, Caso, Christillin, Christillin, Christillin, Christillin, Christillin, Christillin, Christillin, Christillin, Compton, Dale, Dale, Damashek, deForest, deJager, Delli Carpini, Dickhoff, Dickhoff, Dietrich, Dodge, Dodge, Drake, Dressel, Enik, Ericson, Ericson, Ericson, Ericson, Fabrocici, Fano, Federspiel, Feldman, Franz, Friar, Friar, Friar, Friar, Friman, Fuhrberg, Fuhrberg, Fuhrberg, Fuhrberg, Fujita, Fujita, Fuller, Gaerttner, Garcı́a-Recio, Gell-Mann, Gerasimov, Goldansky, Goldberger, Goldhaber, Gottfried, Hall, Hanstein, Hara, Harvey, Hayward, Hayward, Hayward, Hayward, Hyuga, Hünger, Hütt, Hütt, Hütt, Igarashi, Jacob, Ji, Kahane, Kane, Kane, Klingenbeck, Koch, Koester, Kraus, Kraus, Krause, Kroll, Kroll, Kurath, Körfgen, L'vov, L'vov, L'vov, L'vov, L'vov, Laget, Laget, Landau, Landau, Laszewski, Laymon, LeBrun, Leicht, Lenz, Leprêtre, Levchuk, Levinger, Levinger, Levinger, Levinger, Lohmann, Ludwig, Lvov, MacCormic, MacGibbon, Matsuura, Migdal, Migdal, Miller, Milstein, Molinari, Mondry, Moricciani, Nambu, Nathan, Nathan, Nolte, Nolte, Oset, Oset, Oset, Papatzacos, Pasquini, Petrun'kin, Petrunkin, Pitthan, Proff, Radyushkin, Rambo, Riska, Rosa-Clot, Rose, Rullhusen, Ryckebusch, Ryckebusch, Ryckebusch, Schelhaas, Schelhaas, Schelhaas, Schmiedmayer, Schmitt, Schröder, Schumacher, Schumacher, Schumacher, Schumacher, Schumacher, Selke, Serot, Siegert, Silbar, Stearns, Steinwedel, Stichel, Thirring, Thorn, Udagawa, Vanderhaeghen, Veyssière, Vogt, Wakamatsu, Weiner, Weise, Weise, Weise, Wells, Weng, Weyrauch, Wichmann, Wienhard, Wilbois, Wissmann, Wissmann, Wright, Wright, Zieger, Ziegler, Zorro, Zurmühl +232 morecore +2 more sourcesGeneration of High‐Brilliance Polarized γ‐Rays Via Vacuum Dichroism‐Assisted Vacuum Birefringence
Advanced Science, Volume 12, Issue 33, September 4, 2025.A novel method is proposed for generating such γ‐photon beams via the vacuum‐dichroism‐assisted quantum vacuum birefringence effect, only utilizing well‐established unpolarized electron beams and solving the critical problem of demanding polarized ones.Chong Lv, Feng Wan, Yousef I. Salamin, Qian Zhao, Mamutjan Ababekri, Ruirui Xu, Jian‐Xing Li +6 morewiley +1 more source