In 2000s, three-dimensional shapes of gluon particles in a proton were discovered. It has been demonstrated that asymmetrical gravitational forces exist between these particles. The asymmetric gravitational force between gluon particles in a proton causes that proton to accelerate on its own and this is the basis of the gas mo;ecular motions. In this work, a simplified acceleration model which simulated the asymmetric gravitational force in a proton was proposed. Here we report the comparative study between density distribution of gravitational forces obtained from the proposed model and Max well-Boltzmann velocity distribution that are in good agreement with expressing the behavior of gas molecules respectively.
목차
ABSTRACT 1. 서론 2. 양성자 가속도 모델과 시뮬레이션 2.1 양성자 내부구조 2.2 양성자의 가속도 2.3 단순화된 양성자 가속도 모델 2.4 시뮬레이션 결과 2.5 맥스웰-볼츠만 속력분포와의 비교고찰 3. 결론 References
키워드
기체분자운동양성자 가속도비대칭 중력맥스웰-볼츠만 속력분포글루온 입자 3D 형상Gas molecular motionProton accelerationAsymmetric gravitational forceMaxwell-Boltzmann velocity distributionThree-dimensional shapes of gluon particles
저자
하태웅 [ Tae-Woong Ha | Department of Mechanical Engineering, Gachon University ]
Corresponding Author
심충건 [ Choong-Gun Sim | Dept. of semiconductor and Mechanical Engineering, Chungbuk Health & Science University ]
Corresponding Author