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Standard model with spontaneously broken quantum scale invariance

机译:具有自发破坏的量子尺度不变性的标准模型

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We explore the possibility that scale symmetry is a quantum symmetry that is broken only spontaneously and apply this idea to the standard model. We compute the quantum corrections to the potential of the Higgs field ( ? ) in the classically scale-invariant version of the standard model ( m ? = 0 at tree level) extended by the dilaton ( σ ). The tree-level potential of ? and σ , dictated by scale invariance, may contain nonpolynomial effective operators, e.g., ? 6 / σ 2 , ? 8 / σ 4 , ? 10 / σ 6 , etc. The one-loop scalar potential is scale invariant, since the loop calculations manifestly preserve the scale symmetry, with the dimensional regularization subtraction scale μ generated spontaneously by the dilaton vacuum expectation value μ ~ ? σ ? . The Callan-Symanzik equation of the potential is verified in the presence of the gauge, Yukawa, and the nonpolynomial operators. The couplings of the nonpolynomial operators have nonzero beta functions that we can actually compute from the quantum potential. At the quantum level, the Higgs mass is protected by spontaneously broken scale symmetry, even though the theory is nonrenormalizable. We compare the one-loop potential to its counterpart computed in the “traditional” dimensional regularization scheme that breaks scale symmetry explicitly ( μ = constant ) in the presence at the tree level of the nonpolynomial operators.
机译:我们探索了尺度对称性是仅被自然破坏的量子对称性的可能性,并将这一思想应用于标准模型。我们在标准模型的经典尺度不变版本(树级别的m = 0)中计算了由Dilaton(σ)扩展的希格斯场()势的量子校正。树级潜力?由标度不变性决定的σ和σ可以包含非多项式有效算符,例如? 6 /σ2,? 8 /σ4,? 10 /σ6等。一环标量势是尺度不变的,因为循环计算明显保留了尺度对称性,并且维拉正负真空期望值μ〜?自发生成了尺寸正则化减法尺度μ。 σ? 。在存在量规,Yukawa和非多项式算子的情况下,验证了势的Callan-Symanzik方程。非多项式算子的耦合具有非零的beta函数,我们实际上可以根据量子势来计算。在量子水平上,希格斯质量受到自发破碎的尺度对称性的保护,即使该理论不可重整。我们将单环电势与其在“传统”维正则化方案中计算出的一环电势进行比较,该方案在非多项式算子的树级存在下会显着打破尺度对称性(μ= constant)。

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