CONSTRAINTS ON THE COSMOLOGICAL CONSTANT DUE TO SCALE INVARIANCE

Author:

ALURI PAVAN K.1,JAIN PANKAJ1,MITRA SUBHADIP2,PANDA SUKANTA3,SINGH NAVEEN K.1

Affiliation:

1. Department of Physics, IIT Kanpur, Kanpur 208 016, India

2. The Institute of Mathematical Sciences, Chennai 600 113, India

3. Indian Institute of Science Education and Research, Bhopal 462 023, India

Abstract

We consider the standard model with local scale invariance. The theory shows exact scale invariance of dimensionally regulated action. We show that massless gauge fields, which may be Abelian or non-Abelian, lead to vanishing contribution to the cosmological constant in this theory. This result follows in the quantum theory, to all orders in the gauge couplings. However, we have not considered contributions higher orders in the gravitational coupling. Similarly we also find that massless fermion fields yield null contribution to the cosmological constant. The effective cosmological constant in this theory is nonzero due to the phenomenon of cosmological symmetry breaking, which also gives masses to all the massive fields, besides generating the Planck mass. We find a simple relationship between the curvature scalar and the vacuum value of the Higgs field in the limit when we ignore all other contributions to the energy density besides the vacuum energy.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Astronomy and Astrophysics,Nuclear and High Energy Physics

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A note on Weyl gauge symmetry in gravity;Classical and Quantum Gravity;2024-09-09

2. Standard Model in conformal geometry: Local vs gauged scale invariance;Annals of Physics;2024-01

3. Standard Model in Weyl conformal geometry;The European Physical Journal C;2022-01

4. The fine tuning of the cosmological constant in a conformal model;International Journal of Modern Physics A;2015-11-17

5. Relating the cosmological constant and slow-roll to conformal symmetry breaking;Modern Physics Letters A;2014-11-20

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