403 resultados para Nyquist ghost
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We study numerically the Schwinger-Dyson equations for the coupled system of gluon and ghost propagators in the Landau gauge and in the case of pure gauge QCD. We show that a dynamical mass for the gluon propagator arises as a solution while the ghost propagator develops an enhanced behavior in the infrared regime of QCD. Simple analytical expressions are proposed for the propagators, and the mass dependency on the ΛQCD scale and its perturbative scaling are studied. We discuss the implications of our results for the infrared behavior of the coupling constant, which, according to fits for the propagators infrared behavior, seems to indicate that α s(q2) → 0 as q2 → 0. © SISSA/ISAS 2004.
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A ten-dimensional super-Poincaré covariant formalism for the superstring was recently developed which involves a BRST operator constructed from superspace matter variables and a pure spinor ghost variable. A super-Poincaré covariant prescription was defined for computing tree amplitudes and was shown to coincide with the standard RNS prescription. In this paper, picture-changing operators are used to define functional integration over the pure spinor ghosts and and to construct a suitable b ghost. A super-Poincaré covariant prescription is then given for the computation of N-point multiloop amplitudes. One can easily prove that massless N-point multiloop amplitudes vanish for N < 4, confirming the perturbative finiteness of superstring theory. One can also prove the Type IIB S-duality conjecture that R4 terms in the effective action receive no perturbative contributions above one loop. © SISSA/ISAS 2004.
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A relation is found between nonlocal conserved charges in string theory and certain ghost-number two states in the BRST cohomology. This provides a simple proof that the nonlocal conserved charges for the superstring in an AdS 5 × S5 background are BRST-invariant in the pure spinor formalism and are κ-symmetric in the Green-Schwarz formalism. © SISSA/ISAS 2005.
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In this article we study the general structure and special properties of the Schwinger-Dyson equation for the gluon propagator constructed with the pinch technique, together with the question of how to obtain infrared finite solutions, associated with the generation of an effective gluon mass. Exploiting the known all-order correspondence between the pinch technique and the background field method, we demonstrate that, contrary to the standard formulation, the non-perturbative gluon self-energy is transverse order-by-order in the dressed loop expansion, and separately for gluonic and ghost contributions. We next present a comprehensive review of several subtle issues relevant to the search of infrared finite solutions, paying particular attention to the role of the seagull graph in enforcing transversality, the necessity of introducing massless poles in the three-gluon vertex, and the incorporation of the correct renormalization group properties. In addition, we present a method for regulating the seagull-type contributions based on dimensional regularization; its applicability depends crucially on the asymptotic behavior of the solutions in the deep ultraviolet, and in particular on the anomalous dimension of the dynamically generated gluon mass. A linearized version of the truncated Schwinger-Dyson equation is derived, using a vertex that satisfies the required Ward identity and contains massless poles belonging to different Lorentz structures. The resulting integral equation is then solved numerically, the infrared and ultraviolet properties of the obtained solutions are examined in detail, and the allowed range for the effective gluon mass is determined. Various open questions and possible connections with different approaches in the literature are discussed. © SISSA 2006.
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We study the necessary conditions for obtaining infrared finite solutions from the Schwinger-Dyson equation governing the dynamics of the gluon propagator. The equation in question is set up in the Feynman gauge of the background field method, thus capturing a number of desirable features. Most notably, and in contradistinction to the standard formulation, the gluon self-energy is transverse order-by-order in the dressed loop expansion, and separately for gluonic and ghost contributions. Various subtle field-theoretic issues, such as renormalization group invariance and regularization of quadratic divergences, are briefly addressed. The infrared and ultraviolet properties of the obtained solutions are examined in detail, and the allowed range for the effective gluon mass is presented.
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The Brazilian Geodetic Network started to be established in the early 40's, employing classical surveying methods, such as triangulation and trilateration. With the introduction of satellite positioning systems, such as TRANSIT and GPS, that network was densified. That data was adjusted by employing a variety of methods, yielding distortions in the network that need to be understood. In this work, we analyze and interpret study cases in an attempt to understand the distortions in the Brazilian network. For each case, we performed the network adjustment employing the GHOST software suite. The results show that the distortion is least sensitive to the removal of invar baselines in the classical network. The network would be more affected by the inexistence of Laplace stations and Doppler control points, with differences up to 4.5 m.
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Regional odontodysplasia (RO) is a rare disorder of dental development. The affected teeth are clinically hypoplastic and hypocalcified, presenting a ghost-like appearance radiographically. The aim of this work was to report a clinical case of a child with both primary and permanent dentition affected by RO. The conducted therapy was based on a conservative approach, which consisted of follow-up clinical evaluations of the anomalous teeth. However, the endodontic treatment of the primary incisors failed. Then, the chosen option for patient rehabilitation became extraction followed by removable of prosthesis confection. The extracted teeth were processed for histological analysis. In spite of the uncertain prognosis, but taking into account the psychological aspects of the patient, a conservative approach in an attempt to maintain those viable teeth in the oral cavity should be established.
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Background: Odontogenic tumors are lesions that are derived from remnants of the components of the developing tooth germ. The calcifying cystic odontogenic tumor or calcifying odontogenic cyst is a benign cystic neoplasm of odontogenic origin that is characterized by an ameloblastoma-like epithelium and ghost cells. Calcifying cystic odontogenic tumor may be centrally or peripherally located, and its ghost cells may exhibit calcification, as first described by Gorlin in 1962. Most peripheral calcifying cystic odontogenic tumors are located in the anterior gingiva of the mandible or maxilla. Case presentation. Authors report a rare case of a peripheral calcifying cystic odontogenic tumor of the maxillary gingiva. A 39-year-old male patient presented with a fibrous mass on the attached buccal gingiva of the upper left cuspid teeth. It was 0.7-cm-diameter, painless and it was clinically diagnosed as a peripheral ossifying fibroma. After an excisional biopsy, the diagnosis was peripheric calcifying cystic odontogenic tumor. The patient was monitored for five years following the excision, and no recurrence was detected. Conclusions: All biopsy material must be sent for histological examination. If the histological examination of gingival lesions with innocuous appearance is not performed, the frequency of peripheral calcifying cystic odontogenic tumor and other peripheral odontogenic tumors may be underestimated. © 2012 Lima et al.; licensee BioMed Central Ltd.
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This work analyses a hypothetically improved perturbative approach taking a dressed massive-like gluon propagator and an effective coupling into account. As an early step, corrections were calculated to the ghost and gluon propagators, and the ghost-gluon vertex in the Landau gauge, pure SU(3) Yang-Mills theory. Results were satisfactorily compared with lattice data. © 2013 American Institute of Physics.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Os Thalassinidea são invertebrados marinhos de grande importância na ecologia de ambientes de fundos moles, especialmente dado sua influência nos fluxos de oxigênio, energia e nutrientes e, atividades bioturbadoras. Estes organismos vivem em galerias das quais dependem para diversas necessidades, como proteção, reprodução e alimentação. Em alguns lugares do mundo este grupo tem sido explorado para utilização como isca. A espécie Lepidophthalmus siriboia Felder & Rodrigues, 1993 (Crustacea: Callianassidae) ocorre desde a Flórida até o Brasil. Este estudo tem como objetivo avaliar a dinâmica e a estrutura populacional de L. siriboia na ilha de Maiandeua (PA), associando os processos observados com características ambientais ligadas ao sedimento e à água. As coletas ocorreram mensalmente entre junho de 2007 e maio de 2008, sendo os organismos capturados utilizando bomba de sucção. Em laboratório, os animais foram sexados, medidos e pesados. Nas fêmeas ovígeras foi contado o número de ovos aderidos aos pleópodos. O crescimento foi estimado através da equação de crescimento de Von Bertalanffy que estabelece a relação entre o comprimento total (CT) e a idade (t). Foi capturado um total de 1268 indivíduos (753 machos e 515 fêmeas), cujos comprimentos variaram de 0,3 a 1,85 cm e o peso de 0,01 a 3,09 g. Os comprimentos médios mensais das fêmeas foram significantemente maiores do que dos machos (p<0.05) em quase todos os meses do ano. O comprimento da carapaça e o comprimento do propódio para os machos tiveram alta e significante correlação, com crescimento alométrico positivo para ambos os sexos. O tamanho de primeira maturação obtido foi de 0,7 cm para as fêmeas e 0,6 cm para os machos. Os machos foram proporcionalmente mais abundantes, totalizando 59,4% de todos os organismos capturados (proporção sexual de 1,46 machos: 1 fêmea). Houve predomínio significativo de machos nas classes de comprimento entre 0,2 e 1,2 cm e de fêmeas nas classes de comprimento maior/igual a 1,2 cm. Foram registradas 139 fêmeas ovígeras, na qual a maioria (48,2% do total) ocorreu no intervalo de classe 1,1 a 1,2 cm de comprimento da carapaça. A fecundidade absoluta variou de 0 a 1546 ovos/fêmea, com valor médio de 826,25 ovos/fêmea. Observou-se correlação significativa entre o número de ovos, peso e comprimento da carapaça. As fêmeas tiveram crescimento maior que dos machos, sendo observados valores para machos de L_: 1,63 , K: 1, C: 0,2, WP: 0,18 e para fêmeas; L_: 1,68, K: 0,8, C: 0,2 e WP: 0,09. As estimativas de mortalidade dos machos foram maiores que para as fêmeas em todos os métodos utilizados: curva de captura (Z=1,67 e Z=0,11 para machos e fêmeas), Beverton e Holt (Z=1,9 e Z= 1,76 para machos e fêmeas) e Powell–Wetherall (Z/K=3,98 e Z/K= 2,25 para machos e fêmeas). Foram registrados três pulsos principais, sendo um pulso registrado em novembro, um em fevereiro e outro em maio. Os resultados obtidos permitem concluir: 1. comprimento médio dos machos é inferior ao das fêmeas ao longo do ano; 2. fêmeas são dominantes nas classes de comprimento superiores (_1,2 cm); 3. a reprodução é contínua com a ocorrência de fêmeas ovígeras ao longo do ano; 4. parâmetros de crescimento estimados foram maiores para as fêmeas do que para machos; 5. Fêmeas tiveram redução da taxa de crescimento em janeiro (WP: 0,09) e machos em fevereiro (WP: 0,18); 6. a mortalidade é maior para os machos; 7. Recrutamento ocorre ao longo do ano com três picos pronunciados em novembro, fevereiro e maio.