Literatura académica sobre el tema "B mesons Quantum chromodynamics"

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Artículos de revistas sobre el tema "B mesons Quantum chromodynamics"

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Kim, D. Y. y S. N. Sinha. "Remarks on broken chiral SU(5) × SU(5) symmetry and B mesons". Canadian Journal of Physics 63, n.º 10 (1 de octubre de 1985): 1294–98. http://dx.doi.org/10.1139/p85-213.

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In a recent paper, Hatzis has estimated the masses and weak decay constants of b-flavored pseudoscalar mesons in a broken chiral SU(5) × SU(5) symmetry method. The estimated weak decay constant of B meson, [Formula: see text], however, does not agree with the value [Formula: see text] evaluated by Mathur et al. with the quantum chromodynamics (QCD) sum-rule model. We re-examined the problem applying the broken chiral SU(5) × SU(5) symmetry approach using a set of mass formulae. With this method we estimate the symmetry-breaking parameters and decay constants of pseudoscalar mesons. We found a consistent result for the decay constant: [Formula: see text]. The explicit numerical value of these constants, however, are lower than that of the QCD sum rule. This may be due to the limited validity of the broken chiral symmetry approach for heavy mesons.
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Talebtash, Mohammad Rahim y Hossein Mehraban. "Final state interaction effect in the pure annihilation B→ϕϕ decay". Canadian Journal of Physics 93, n.º 11 (noviembre de 2015): 1235–39. http://dx.doi.org/10.1139/cjp-2014-0472.

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We analyzed the process of [Formula: see text] decay in quantum chromodynamics factorization (QCDF) and final state interaction (FSI). In QCDF for this decay we have only the annihilation graph and we expected small branching ratio. Then we considered FSI effect as a sizable correction where the intermediate states are [Formula: see text], K+ K–, and [Formula: see text] mesons. To consider the amplitudes of these intermediate states, the QCDF approach was used. The experimental branching ratio of [Formula: see text] is less than 2 × 10–7 and our results are 0.04 × 10–7 and 1.54 × 10–7 from QCDF and FSI, respectively.
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Karpishkov, A. V., M. A. Nefedov, V. A. Saleev y A. V. Shipilova. "B-meson production at Tevatron and the LHC in the Regge limit of quantum chromodynamics". Physics of Atomic Nuclei 79, n.º 2 (marzo de 2016): 275–77. http://dx.doi.org/10.1134/s1063778816020095.

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Yu, Gong-Ming, Gao-Gao Zhao, Zhen Bai, Yan-Bing Cai, Hai-Tao Yang y Jian-Song Wang. "ηQ Meson Photoproduction in Ultrarelativistic Heavy Ion Collisions". Advances in High Energy Physics 2017 (2017): 1–7. http://dx.doi.org/10.1155/2017/2379319.

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The transverse momentum distributions for inclusive ηc,b meson described by gluon-gluon interactions from photoproduction processes in relativistic heavy ion collisions are calculated. We considered the color-singlet (CS) and color-octet (CO) components within the framework of Nonrelativistic Quantum Chromodynamics (NRQCD) in the production of heavy quarkonium. The phenomenological values of the matrix elements for the color-singlet and color-octet components give the main contribution to the production of heavy quarkonium from the gluon-gluon interaction caused by the emission of additional gluon in the initial state. The numerical results indicate that the contribution of photoproduction processes cannot be negligible for midrapidity in p-p and Pb-Pb collisions at the Large Hadron Collider (LHC) energies.
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JACOBSEN, RAFAEL B., GUILHERME F. MARRANGHELLO, CÉSAR A. Z. VASCONCELLOS y ALEXANDRE MESQUITA. "QUARK–GLUON PLASMA IN A BAG MODEL WITH A SOFT SURFACE". International Journal of Modern Physics D 13, n.º 07 (agosto de 2004): 1431–35. http://dx.doi.org/10.1142/s021827180400564x.

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We analyze the implications of quantum hadrodynamics (QHD) and quantum chromodynamics (QCD) to model, respectively, two distinct phases of nuclear matter, a baryon–meson phase and a quark–gluon phase. We develop an equation of state (EoS) in the framework of a quark–meson coupling model for the hadron–meson phase using a new version of the fuzzy bag model with scalar–isoscalar, vector–isoscalar and vector–isovector meson–quark couplings and leptonic degrees of freedom as well as the constrains from chemical equilibrium, baryon number and electric charge conservation. We model the EoS for the QGP phase for asymptotically free massless quarks and gluons using the MIT approach and a temperature and baryon chemical potential dependent bag constant, B(T,μ), which allows an isentropic equilibrium phase transition from a QGP to a hadron gas as determined by thermodynamics. Our predictions yield the EoS and static global properties of neutron stars and protoneutron stars at low and moderate values of temperature. Our results are slightly modified in comparison to predictions based on the standard MIT bag model with a constant bag pressure B.
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Kisslinger, Leonard S. "Review of Charmonium and Bottomonium Quark State Production via Relativistic Heavy Ion Collisions". Universe 6, n.º 1 (10 de enero de 2020): 13. http://dx.doi.org/10.3390/universe6010013.

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This is a review of the production of heavy quark states via relativistic heavy ion collisions in RHIC. The heavy quarks here are c, charm quark, and b, bottom quark. The states are charmonium meson states Ψ ( n S ) , with n = 1,2 and upsilon meson states Υ ( m S ) , with m = 1,2,3. Quantum Chromodynamics (QCD) sum rules were used to derive the result that the Ψ ( 2 S ) and Υ ( 3 S ) are mixed hybrid states, which increase their production cross sections. We also review the Ψ ( n S ) and Υ ( m S ) production cross sections via Cu-Cu and Au-Au collisions, which are very important for this review of the production of heavy quark states in RHIC. The possible detection of the Quark Gluon Plasma (QGP) is also reviewed.
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Aznauryan, I. G., A. Bashir, V. M. Braun, S. J. Brodsky, V. D. Burkert, L. Chang, Ch Chen et al. "STUDIES OF NUCLEON RESONANCE STRUCTURE IN EXCLUSIVE MESON ELECTROPRODUCTION". International Journal of Modern Physics E 22, n.º 06 (junio de 2013): 1330015. http://dx.doi.org/10.1142/s0218301313300154.

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Studies of the structure of excited baryons are key factors to the N* program at Jefferson Lab (JLab). Within the first year of data taking with the Hall B CLAS12 detector following the 12 GeV upgrade, a dedicated experiment will aim to extract the N* electrocouplings at high photon virtualities Q2. This experiment will allow exploration of the structure of N* resonances at the highest photon virtualities ever achieved, with a kinematic reach up to Q2 = 12 GeV 2. This high-Q2 reach will make it possible to probe the excited nucleon structures at distance scales ranging from where effective degrees of freedom, such as constituent quarks, are dominant through the transition to where nearly massless bare-quark degrees of freedom are relevant. In this document, we present a detailed description of the physics that can be addressed through N* structure studies in exclusive meson electroproduction. The discussion includes recent advances in reaction theory for extracting N* electrocouplings from meson electroproduction off protons, along with Quantum Chromodynamics (QCD)-based approaches to the theoretical interpretation of these fundamental quantities. This program will afford access to the dynamics of the nonperturbative strong interaction responsible for resonance formation, and will be crucial in understanding the nature of confinement and dynamical chiral symmetry breaking in baryons, and how excited nucleons emerge from QCD.
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Сабов, В. І., М. Я. Євич y Ю. І. Мага. "MASSES OF PSEUDOSCALAR MESONS IN LOW-ENERGY QUANTUM CHROMODYNAMICS". Scientific Herald of Uzhhorod University.Series Physics 6 (31 de marzo de 2000): 169–74. http://dx.doi.org/10.24144/2415-8038.2000.6.169-174.

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PATHAK, KRISHNA KINGKAR y D. K. CHOUDHURY. "Open flavour charmed mesons in a quantum chromodynamics potential model". Pramana 79, n.º 6 (16 de agosto de 2012): 1385–93. http://dx.doi.org/10.1007/s12043-012-0342-1.

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Neto, A. Francisco, P. A. Faria da Veiga y M. O’Carroll. "Existence of mesons and mass splitting in strong coupling lattice quantum chromodynamics". Journal of Mathematical Physics 45, n.º 2 (febrero de 2004): 628–41. http://dx.doi.org/10.1063/1.1636000.

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Tesis sobre el tema "B mesons Quantum chromodynamics"

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Harrison, Judd Gavin Ivo Henry. "Lattice QCD determination of weak decays of B mesons". Thesis, University of Cambridge, 2018. https://www.repository.cam.ac.uk/handle/1810/286066.

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This thesis uses a variety of numerical and statistical techniques to perform high precision calculations in high energy physics using quantum field theory. It introduces the experimental motivation for the calculation of B meson form factors and includes a discussion of previous work. It then describes the modern theoretical framework describing these phenomena, outlining quantum chromodynamics and electroweak theory, and then illustrating the procedure of gauge fixing, the quantum effective action and background field gauge which is required for subsequent perturbative work. Details of the basic methodology of lattice quantum field theory are given as well as the specific formulation of the relativistic theory and nonrelativistic approximations used in this work to describe quantum chromodynamics. A comprehensive calculation of the zero recoil B to D* form factor is then presented, using state of the art lattice techniques with relativistic charm sea quarks and light sea quarks with correct physical masses, leading to a discussion of the dominant sources of uncertainty and possible resolutions of experimental tensions. Also included is preliminary work towards the full calculation of nonzero recoil matrix elements, with the aim of outlining possible future work. Finally, this thesis presents the computation of parameters correcting for radiative one loop phenomena and corrections to the kinetic coupling parameters in nonrelativistic quantum chromodynamics in order to achieve a desirable level of precision in future calculations. This is done using Monte-Carlo integration to evaluate integrals from diagrams generated using automated lattice perturbation theory in background field gauge in order to match the coefficients of the effective action between the lattice and the continuum.
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Gulez, Emel. "B meson semileptonic form factors using unquenched lattice QCD". Columbus, Ohio : Ohio State University, 2006. http://rave.ohiolink.edu/etdc/view?acc%5Fnum=osu1155239314.

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Sharkey, Kieran James. "An investigation of the running coupling and meson masses in lattice QCD". Thesis, University of Liverpool, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.343926.

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Foster, Martyn Stuart. "Adjoint sources, disconnected loops and other fruit of lattice QCD". Thesis, University of Liverpool, 1998. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.366408.

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Page, Philip R. "Gluonic excitations in mesons". Thesis, University of Oxford, 1995. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.318835.

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Mia, Mohammed Shahpur. "Vector meson properties in a strongly interacting thermal medium". Thesis, McGill University, 2007. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=101626.

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We analyze the hadronic phase of QCD using effective thermal field theory techniques. Our goal is to investigate the medium created in heavy ion collisions by calculating the electromagnetic emissivity of strongly interacting matter in the hadronic phase. We proceed through examining the vector meson properties in a thermal bath where the temperature reaches deconfinement and chiral symmetry is restored. In particular we observe the behavior of the rho spectral function in thermal medium and use it as a probe to examine the thermal environment generated in the collision.
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Thomson, Alan William Pollock. "Numerical simulations of four-quark and hybrid mesons in lattice quantum chromodynamics". Thesis, University of Edinburgh, 1985. http://hdl.handle.net/1842/13117.

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Vujanovic, Gojko. "A theoretical model for the in-medium spectral density of vector mesons /". Thesis, McGill University, 2008. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=111618.

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We study the hadronic phase of Quantum Chromodynamics within a formalism that uses strongly interacting resonances in the Regge theory approach. Our aim is to investigate the properties of the medium created in a relativistic nucleus-nucleus collision, using the electromagnetic decays of vector mesons as probe. To do so, we first layout the foundations of Regge theory, which is then used to calculate the in-medium properties of vector mesons. This methodology will be used to calculate for the first time the properties of the &phis; meson in a hadronic medium. The properties are contained within the imaginary part of the propagator (IMPP). Since it is related to electromagnetic decay via vector meson dominance, the IMPP is a probe of strongly interacting hadron gas created in the collision.
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Irwin, Blake A. "Calculation of the meson decays of vector Œ vector + pseudoscalar using Q.C.D". Thesis, McGill University, 1988. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=63992.

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Mihara, Antonio. "A fenomenologia hadrônica e as soluções das equações de Schwinger-Dyson /". São Paulo, 2003. http://hdl.handle.net/11449/132818.

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Orientador: Adriano Antonio Natale
Banca: Atílio Cucchieri
Banca: Márcio José Menon
Banca: Maria Beatriz de Leone Gay Ducati
Banca: Rogério Rosenfeld
Resumo: Através da solução das equações de Schwinger-Dyson (ESD) é possível estudar diversos aspectos importantes da QCD não-perturbativa como confinamento e quebra de simetria quiral; desta forma as ESD são, obviamente, muito interessantes para estudo da fenomenologia das interações hadrônicas. Após uma breve revisão sobre equações de Schwinger-Dyson (ESD) e sobre algumas soluções da ESD do propagador do glúon disponíveis na literatura, apresentamos possíveis testes fenomenológicos para estas soluções. Observaremos que apenas uma das soluções apresentadas descreve satisfatoriamente os dados experimentais, e esta solução é compatível com uma massa dinâmica para o glúon. Finalizando, supomos que o glúon têm uma massa dinâmica e calculamos seus efeitos sobre os decaimentos de quarkônios pesados
Abstract: Through the solution of Schwinger-Dyson equations (SDE) it is possible to study important features of nonperturbative QCD such as confinement and chiral symmetry breaking; in this way SDE are, obviously, very interesting for the study of phenomenology of hadronic interactions. After a brief review on SDE and some Solutions of gluon propagator SDE available in literature, we present possible phenomenological tests for these solutions. We shall observe that only one of the solutions presented describes satisfactorily the experimental data, and such solution is compatible with a dynamical mass for the gluon. Eventually, we assume that the gluon has a dynamical mass and calculate its effects on heavy quarkonia decays
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Libros sobre el tema "B mesons Quantum chromodynamics"

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service), SpringerLink (Online, ed. Flavor physics and the TeV scale. Dordrecht [Netherlands]: Springer, 2009.

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V, Anisovich A., ed. Mesons and baryons: Systematization and methods of analysis. Singapore: World Scientific, 2008.

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1965-, Fariborz A. H., State University of New York Institute of Technology at Utica/Rome. School of Arts & Sciences., State University of New York Institute of Technology at Utica/Rome. Office of Sponsored Research. y United States. Dept. of Energy., eds. Scalar mesons: An interesting puzzle for QCD : Utica, New York, 16-18 May 2003. Melville, N.Y: American Institute of Physics, 2003.

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Scalar Mesons: An Interesting Puzzle for QCD (AIP Conference Proceedings / High Energy Physics). American Institute of Physics, 2003.

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1965-, Fariborz A. H., ed. Scalar mesons: An interesting puzzle for QCD : Utica, New York, 16-18 May, 2003. Melville, N.Y: American Institute of Physics, 2003.

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Schilling, K., B. Bunk y K. H. Mutter. Lattice Gauge Theory: A Challenge in Large-Scale Computing (NATO Science Series: B:). Springer, 1999.

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Capítulos de libros sobre el tema "B mesons Quantum chromodynamics"

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"B. Conventions and Reference Formulae". En Parton Densities in Quantum Chromodynamics, 164–83. De Gruyter, 2016. http://dx.doi.org/10.1515/9783110430608-009.

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Kenyon, Ian R. "Particle physics I". En Quantum 20/20, 323–50. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198808350.003.0018.

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Particle families (quarks and leptons), their properties and their interactions are introduced. The exchange mechanism and the Yukawa potential are discussed. Natural units are explained. The cross-section for e + e + → μ‎ + μ‎+ is calculated using a first order Feynman diagram. Comparison with data reveals the existence of the Z0-boson and makes a link between electroweak processes. Higher orders diagrams give divergences and their removal by renormalization is described. Neutrino properties are outlined and the determination of the number of light neutrinos related. The weak interaction is discussed: parity and charge parity are seen to be maximally violated in W-boson exchange, but the product is approximately conserved. Handedness is pursued in an appendix using Dirac spinors. The neutrino mass and weak eigenstates differ and this leads to oscillations between weak eigenstates in flight. Measurements of the neutrino flux from the sun revealing this behaviour are described. Weak and strong eigenstates of quarks also differ by a unitary transformation, the CKM matrix. This difference leads to oscillations of certain neutral mesons from particle to antiparticle. This behaviour is explored for neutral K-mesons and for B0 d mesons. CP violation is observed, which is required for the survival of matter in the universe.
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Bernabéu, José y Adolfo Plasencia. "Unifying Particle Physics with the Cosmology of the Primordial Universe". En Is the Universe a Hologram? The MIT Press, 2017. http://dx.doi.org/10.7551/mitpress/9780262036016.003.0002.

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The dialogue with physicist José Bernabéu firstly looks into why discovery of the Higgs boson has a spiritual dimension and is a great starting point for new discovery. It then moves on to discuss why CERN, the largest laboratory in the world, is the supreme symbol of an advanced Society and a “civilization catalyst”. American, Asian and European physicists working together as equals in a place that is an essential expression of “understanding”; the noblest and most sublime human expression. An explanation then follows about how observation of incredibly small things using the Large Hadron Collider (LHC) is leading to a new type of physics for explaining unsolved problems, such as the mass of neutrons, matter and dark energy, without losing view of the ‘bigger picture ’in order to widen knowledge of the cosmos. For example with Hubble, where the further away we look, the further back in time we see. Finally, a recent contribution by Bernabéu is discussed which deals with ‘Time-reversal violation with quantum-entangled B mesons’, a consideration of the behavior of elementary particles, as part of the quest to try and understand the intriguing symmetry between the behavior of matter and antimatter.
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Actas de conferencias sobre el tema "B mesons Quantum chromodynamics"

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Lee, Bum-Hoon. "Form factors for B to light meson decay: Light-cone analysis". En New directions in quantum chromodynamics. AIP, 1999. http://dx.doi.org/10.1063/1.1301703.

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Deandrea, Aldo. "Final state interactions in the B meson decay into two pions". En QCD@WORK 2005: International Workshop on Quantum Chromodynamics: Theory and Experiment. AIP, 2006. http://dx.doi.org/10.1063/1.2163763.

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Wang, Wei. "B decays into a scalar/tensor meson: In pursuit of determining the CKM angle γ". En QCD@WORK 2012: International Workshop on Quantum Chromodynamics: Theory and Experiment. AIP, 2012. http://dx.doi.org/10.1063/1.4763503.

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Lee, Su Houng. "Vector mesons in nuclear matter". En New directions in quantum chromodynamics. AIP, 1999. http://dx.doi.org/10.1063/1.1301693.

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KUANG, YU-PING y QING WANG. "FORMAL DERIVATION OF THE CHIRAL LAGRANGIAN FOR PSEUDOSCALAR MESONS FROM QUANTUM CHROMODYNAMICS". En Proceedings of the Third Joint Meeting of Chinese Physicists Worldwide. WORLD SCIENTIFIC, 2002. http://dx.doi.org/10.1142/9789812776785_0035.

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Aliev, T. M., K. Azizi y M. Savci. "Strong coupling constants of heavy baryons with light mesons in QCD". En QCD@WORK 2012: International Workshop on Quantum Chromodynamics: Theory and Experiment. AIP, 2012. http://dx.doi.org/10.1063/1.4763508.

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Colangelo, P. "Radiative decays of excited charm mesons: a light-cone QCD sum rule analysis". En QCD@WORK 2005: International Workshop on Quantum Chromodynamics: Theory and Experiment. AIP, 2006. http://dx.doi.org/10.1063/1.2163766.

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Pham, T. N. "Relations for Direct CP asymmetries in B → PP and B → PV decays". En QCD@WORK 2005: International Workshop on Quantum Chromodynamics: Theory and Experiment. AIP, 2006. http://dx.doi.org/10.1063/1.2163762.

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Ferroni, Fernando. "CP Violation in B-Physics". En QCD@WORK 2005: International Workshop on Quantum Chromodynamics: Theory and Experiment. AIP, 2006. http://dx.doi.org/10.1063/1.2163758.

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Trentadue, Luca. "Perturbative QCD Corrections to b → sγ". En QCD@WORK 2005: International Workshop on Quantum Chromodynamics: Theory and Experiment. AIP, 2006. http://dx.doi.org/10.1063/1.2163749.

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