作者: Kai Pak
DOI: 10.15760/HONORS.81
关键词: Parity (physics) 、 Physics 、 Baryogenesis 、 Observable universe 、 Nuclear physics 、 Large Hadron Collider 、 Particle physics 、 Quantum 、 Antihydrogen 、 Antimatter 、 Asymmetry
摘要: Symmetries are an important area of study in physics, fundamental to the understanding all aspects Nature including beginning and formation Universe, how it appears us today. While current quantum theories experiments observe that CPT (Charge Conjugation, Parity, Time Reversal) symmetry is conserved, there speculations this may not be case with matter antimatter could provide answers as why such a large asymmetry (also known baryogenesis) exists between two normal completely dominating observable Universe. Key studying ability properly capture low enough energy states where accurate can conducted. To assist experimentalists’ efforts at CERN confine antihydrogen, calculations have determined probabilities for producing antihydrogen ions by most efficient means used ultra-cool (mK-range), allow detailed study.