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---+!! Teoria Quântica de Campos I <!--##############################################################################################--> <!-- START TABLE --> <TABLE style="width: 100%;" cellspacing="0" cellpadding="0" border="0" > <TBODY> <!-- FIRST COLUMN --> <TR> <!-- Space --> <TD width="3%"> </TD> <!-- 11 --> <TD width="45%" valign="top"> <!--##############################################################################################--> <img width="100%" src="%PUBURLPATH%/%WEB%/%TOPIC%/Feynman.jpg" alt="Feynman.jpg" /> <div align="right"> _Richard Feynman_ </div> ---++Professores * Sandra S. Padula * Sérgio F. Novaes ---++Duração * 8 semanas * 32 horas ---++Audiência * Estudantes de Pós-Graduação em Física Teórica e Experimental ---++Matrícula * Os formulários e outros documentos podem ser encontrados [[http://www.ift.unesp.br/br/#!/pos-graduacao/formularios-e-documentos/][aqui]] ---++Sobre o Curso ---++Pré-requisitos Recomendados * É essencial ao menos um curso de Mecânica Quântica e desejável um curso de Teoria Clássica de Campos ---++Formato do Curso * Aulas expositivas * Exercícios <!-- ############################################################################################## --> </TD> <!-- Horizontal Space --> <TD width="5%"> </TD> <!-- SECOND COLUMN --> <!-- 12 --> <TD width="45%" valign="top"> <!-- ############################################################################################## --> ---++Programa do Curso ---+++1. Introdução * 1.1 [[https://drive.ncc.unesp.br/index.php/s/TqptTOsfQ5Yjo20][Motivação, Notação e Convenções]] ---+++2. Campo de Klein-Gordon * 2.1 [[https://drive.ncc.unesp.br/index.php/s/rbYIKYETrJ1zJnJ][A Necessidade do Campo]] * 2.2 [[https://drive.ncc.unesp.br/index.php/s/ZU2kY0ZhVM1WQIz][Elementos da Teoria Clássica de Campos]] * 2.3 [[https://drive.ncc.unesp.br/index.php/s/XJHZ9qRQsDbJeCN][Campo de Klein-Gordon como Osciladores Harmônicos]] * 2.4 [[https://drive.ncc.unesp.br/index.php/s/s8YYwrGtQUAVSAh][Campo de Klein-Gordon no Espaço-Tempo]] ---+++3. Campo de Dirac * 3.1 [[https://drive.ncc.unesp.br/index.php/s/AsLkxNVh62WFfYm][Invariância de Lorentz em Equações de Onda]] * 3.2 [[https://drive.ncc.unesp.br/index.php/s/rLA73fFifdHTyMR][Equação de Dirac]] * 3.3 [[https://drive.ncc.unesp.br/index.php/s/J9jnQBYGpAl55ne][Solução de Partícula Livre da Equação de Dirac]] * 3.4 [[https://drive.ncc.unesp.br/index.php/s/a8vrFxYk6RKpuuO][Matrizes de Dirac e Bilineares de Campo de Dirac]] * 3.5 [[https://drive.ncc.unesp.br/index.php/s/fnGOp5vwS0z8B9d][Quantização do Campo de Dirac]] * 3.6 [[https://drive.ncc.unesp.br/index.php/s/DFaeO5UllPREV4I][Simetrias Discretas da Teoria de Dirac]] ---+++4. Campos Interagentes e Diagramas de Feynman * 4.1 [[https://drive.ncc.unesp.br/index.php/s/Jrbym5NvKiIVwRB][Teoria de Perturbação]] * 4.2 [[https://drive.ncc.unesp.br/index.php/s/LHmbKUAwVychORa][Expansão Perturbativa de Funções de Correlação]] * 4.3 [[https://drive.ncc.unesp.br/index.php/s/ZktjSRYcfcJhZxo][Teorema de Wick]] * 4.4 [[https://drive.ncc.unesp.br/index.php/s/Q4isygcPjfrqUX2][Diagramas de Feynman]] * 4.5 [[https://drive.ncc.unesp.br/index.php/s/bH3Gr8CboNZzcQj][Seção de Choque e a Matriz S]] * 4.6 [[https://drive.ncc.unesp.br/index.php/s/Aywp2sNDR0bffjW][Computando elementos de matriz-S a partir de diagramas de Feynman]] * 4.7 [[https://drive.ncc.unesp.br/index.php/s/R5u9WPiFqwu2F5H][Regras de Feynman para Férmions]] * 4.8 [[https://drive.ncc.unesp.br/index.php/s/tM26BYsDgJk3H8E][Regras de Feynman para a Eletrodinâmica Quântica]] ---++Leitura Sugerida O presente curso foi fortemente baseado, com autorização do autor, no livro de Peskin: * *An Introduction to Quantum Field Theory*, Michael E. Peskin e Daniel V. Schroeder (Addison-Wesley Pub. Co., 1995) * http://www.slac.stanford.edu/~mpeskin/QFT.html * *Quantum Field Theory*, _Lewis H. Ryder_ (Cambridge University Press, Cambridge, 2nd Ed. 1996). * *Quantum Field Theory in a Nutshell*, _A. Zee_ (Princeton University Press, 2003). * *Field Quantization, _Walter Greiner e Joachim Reinhardt_ (Springer Verlag, Berlin, 1996), * *Quantum Field Theory*, F. Mandl and G. Shaw (John Wiley, Chichester, Revised Ed., 1993). * *Gauge Theories in Particle Physics*, _I. J. R. Aitchison and A.J.G. Hey_ (Graduate Student Series in Physics, !IoP, 2004) <!-- ############################################################################################## --> </TD> <!-- END LINE --> </TR> </TBODY> <!-- END TABLE --> </TABLE> <!-- ############################################################################################## --> <!-- --> -- %USERSIG{Sergio Novaes - 2016-10-20}% ---++ Comments %COMMENT%
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