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Pólos no gauge do cone de luz e o método de covariantização /Bentín, R. January 2002 (has links)
Orientador: Alfredo Takashi Suzuki / Banca: Antônio Edson Gonçalves / Banca: Vladimir Fainberg / Banca: José Abdalla Heläyel Neto / Banca: Jeferson de Lima Tomazelli / Resumo: Uma forma alternativa no tratamento dos pólos do gauge do cone de luz do tipo (q.n)-£ é estudada, e esta é comparada com as prescrições usuais de Mandelstam e Leibbrandt. Aparentemente no caso de se trabalhar nesta classe de gauges não covariantes, as principais prescrições causais não são prescrições, mas sim identidades das coordenadas do cone de luz. / Abstract: An alternative form of treatment for thelight-cone gauge poles of type (q.n)-£ is studied, and it is compared with the usual prescriptions of Mandelstam and Leibbrandt. It seems that in the case of working in this class of noncovariant gauges, the causal prescriptions are not prescriptions, but identities of the light-cone coordinates. / Doutor
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Pólos no gauge do cone de luz e o método de covariantizaçãoBentín, R [UNESP] January 2002 (has links) (PDF)
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bentin_rm_dr_ift.pdf: 746301 bytes, checksum: 7cbb00b0a1c5073bc17e2cef9dfde684 (MD5) / Uma forma alternativa no tratamento dos pólos do gauge do cone de luz do tipo (q.n)-£ é estudada, e esta é comparada com as prescrições usuais de Mandelstam e Leibbrandt. Aparentemente no caso de se trabalhar nesta classe de gauges não covariantes, as principais prescrições causais não são prescrições, mas sim identidades das coordenadas do cone de luz. / An alternative form of treatment for thelight-cone gauge poles of type (q.n)-£ is studied, and it is compared with the usual prescriptions of Mandelstam and Leibbrandt. It seems that in the case of working in this class of noncovariant gauges, the causal prescriptions are not prescriptions, but identities of the light-cone coordinates.
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Compton Scattering and Renormalization of Twist Four OperatorsJanuary 2016 (has links)
abstract: In this thesis, I present the study of nucleon structure from distinct perspectives. I start by elaborating the motivations behind the endeavors and then introducing the key concept, namely the generalized parton distribution functions (GPDs), which serves as the frame- work describing hadronic particles in terms of their fundamental constituents. The second chapter is then devoted to a detailed phenomenological study of the Virtual Compton Scattering (VCS) process, where a more comprehensive parametrization is suggested. In the third chapter, the renormalization kernels that enters the QCD evolution equations at twist- 4 accuracy are computed in terms of Feynman diagrams in momentum space, which can be viewed as an extension of the work by Bukhvostov, Frolov, Lipatov, and Kuraev (BKLK). The results can be used for determining the QCD background interaction for future precision measurements. / Dissertation/Thesis / Doctoral Dissertation Physics 2016
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