Pauli-Villars regularization of Kaluza-Klein Casimir energy with Lorentz symmetry

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-04-08 DOI:10.1093/ptep/ptae048
Hiroki Matsui, Yutaka Sakamura
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Abstract

The Pauli-Villars regularization is appropriate to discuss the UV sensitivity of low-energy observables because it mimics how the contributions of new particles at high energies cancel large quantum corrections from the light particles in the effective field theory. We discuss the UV sensitivity of the Casimir energy density and pressure in an extra-dimensional model in this regularization scheme, and clarify the condition on the regulator fields to preserve the Lorentz symmetry of the vacuum state. Some of the conditions are automatically satisfied in spontaneously-broken supersymmetric models, but supersymmetry is not enough to ensure the Lorentz symmetry. We show that the necessary regulators can be introduced as bulk fields. We also evaluate the Casimir energy density with such regulators, and its deviation from the result obtained in the analytic regularization.
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具有洛伦兹对称性的卡卢扎-克莱因卡西米尔能的保利-维拉尔正则化
保利-维拉斯正则化适合于讨论低能观测值的紫外敏感性,因为它模拟了高能新粒子的贡献如何抵消有效场理论中来自轻粒子的大量子修正。我们讨论了这种正则化方案下超维模型中卡西米尔能量密度和压力的紫外敏感性,并阐明了保持真空态洛伦兹对称性的调节器场条件。有些条件在自发破缺的超对称模型中会自动满足,但超对称性不足以确保洛伦兹对称性。我们证明,必要的调节器可以作为体场引入。我们还评估了带有这种调节器的卡西米尔能量密度,以及它与解析正则化结果的偏差。
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CiteScore
7.20
自引率
4.30%
发文量
567
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