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Gauge-independent scales related to the standard model vacuum instability

机译:与标准模型真空不稳定性相关的与标尺无关的标度

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The measured (central) values of the Higgs and top quark masses indicate that the standard model (SM) effective potential develops an instability at high field values. The scale of this instability, determined as the Higgs field value at which the potential drops below the electroweak minimum, is about 1 0 11 ? ? GeV . However, such a scale is unphysical as it is not gauge invariant and suffers from a gauge-fixing uncertainty of up to 2 orders of magnitude. Subjecting our system, the SM, to several probes of the instability (adding higher order operators to the potential, letting the vacuum decay through critical bubbles, heating up the system to very high temperature, and inflating it) and asking in each case physical questions, we are able to provide several gauge-invariant scales related with the Higgs potential instability.
机译:希格斯质量和夸克质量的(中心)值表明,标准模型(SM)的有效电势会在高场值下产生不稳定性。这种不稳定性的标度约为1 0 11?1,该标度由电势下降至低于电弱最小值的希格斯场值确定。 ? GeV。但是,这样的标度是非物理的,因为它不是量规不变的,并且具有高达2个数量级的量规固定不确定性。使我们的系统SM经受不稳定性的几个探测(向电势添加高阶运算符,使真空通过临界气泡衰减,将系统加热到很高的温度,然后对其充气),并分别询问物理问题,我们能够提供一些与希格斯潜在不稳定性相关的尺度不变标度。

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