Originated from Lee and Yang’s seminal work on parity violation, a rather exact mirror matter model is proposed using spontaneous mirror symmetry breaking (SMSB), which results in oscillations of neutral particles [1-5]. Based on this model, a new theory – extended Standard Model with Mirror Matter (SM^3) is developed for an elegant solution to dark energy and other celebrated puzzles [6]. In particular, dark energy is interpreted as the leftover vacuum energy due to SMSB. A simple relation between VEV, Higgs and top quark masses is demonstrated. Masses of leptons are understood and the nature of neutrinos is naturally explained. The underlying principles for SM^3 of a strongly interacting, supersymmetric (clarified with a new meaning), and mirrored world will be discussed as well.
Most remarkably, the new theory SM^3 provides a foundation for addressing consistently and quantitatively many more big questions in physics besides dark energy [6]: dark matter and neutron lifetime anomaly [1], evolution of stars [2], matter antimatter imbalance [3], ultrahigh energy cosmic rays [4], unitarity of the CKM matrix [5], etc. In particular, a consistent picture for the origin of both baryon asymmetry and dark matter in the early Universe is presented using kaon and neutron oscillations with new insights for the QCD phase transition and B-violation topological processes [3]. Last but not least, various laboratory experiments with current technology are proposed to test the new theory [5].
[1] https://arxiv.org/abs/1902.01837 [Phys. Lett. B 797, 134921 (2019)] [2] https://arxiv.org/abs/1902.03685 [3] https://arxiv.org/abs/1904.03835 [Phys. Rev. D 100, 063537 (2019)] [4] https://arxiv.org/abs/1903.07474 [5] https://arxiv.org/abs/1906.10262 [6] https://arxiv.org/abs/1908.11838
Seminar: New Physics from the extended Standard Model with Mirror Matter
Abstract:
Originated from Lee and Yang’s seminal work on parity violation, a rather exact mirror matter model is proposed using spontaneous mirror symmetry breaking (SMSB), which results in oscillations of neutral particles [1-5]. Based on this model, a new theory – extended Standard Model with Mirror Matter (SM^3) is developed for an elegant solution to dark energy and other celebrated puzzles [6]. In particular, dark energy is interpreted as the leftover vacuum energy due to SMSB. A simple relation between VEV, Higgs and top quark masses is demonstrated. Masses of leptons are understood and the nature of neutrinos is naturally explained. The underlying principles for SM^3 of a strongly interacting, supersymmetric (clarified with a new meaning), and mirrored world will be discussed as well.
Most remarkably, the new theory SM^3 provides a foundation for addressing consistently and quantitatively many more big questions in physics besides dark energy [6]: dark matter and neutron lifetime anomaly [1], evolution of stars [2], matter antimatter imbalance [3], ultrahigh energy cosmic rays [4], unitarity of the CKM matrix [5], etc. In particular, a consistent picture for the origin of both baryon asymmetry and dark matter in the early Universe is presented using kaon and neutron oscillations with new insights for the QCD phase transition and B-violation topological processes [3]. Last but not least, various laboratory experiments with current technology are proposed to test the new theory [5].
[1] https://arxiv.org/abs/1902.01837 [Phys. Lett. B 797, 134921 (2019)]
[2] https://arxiv.org/abs/1902.03685
[3] https://arxiv.org/abs/1904.03835 [Phys. Rev. D 100, 063537 (2019)]
[4] https://arxiv.org/abs/1903.07474
[5] https://arxiv.org/abs/1906.10262
[6] https://arxiv.org/abs/1908.11838