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Holographic electroweak symmetry breaking from D-branes

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PHYSICAL REVIEW D
卷 76, 期 1, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.76.015015

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We observe several interesting phenomena in a technicolor-like model of electroweak symmetry breaking based on the D4-D8-(D8) over bar system of Sakai and Sugimoto. The benefit of holographic models based on D-brane configurations is that both sides of the holographic duality are well understood. We find that the lightest technicolor resonances contribute negatively to the Peskin-Takeuchi S-parameter, but heavy resonances do not decouple and lead generically to large, positive values of S, consistent with standard estimates in QCD-like theories. We study how the S parameter and the masses and decay constants of the vector and axial-vector techniresonances vary over a one-parameter family of D8-brane configurations. We discuss possibilities for the consistent truncation of the theory to the first few resonances and suggest some generic predictions of stringy holographic technicolor models.

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