ISSN: 2375-3870
International Journal of Modern Physics and Application  
Manuscript Information
 
 
The Electro-Ultimate Particles and a New Method for Detecting the Photon Static Mass
International Journal of Modern Physics and Application
Vol.1 , No. 1, Publication Date: Jul. 7, 2014, Page: 1-8
1538 Views Since July 7, 2014, 754 Downloads Since Apr. 14, 2015
 
 
Authors
 
[1]    

Ding Jian , Integrated Electronic Systems Lab Co. Ltd, Jinan, China.

[2]    

Hu Xiuqin , Department of Computer Science, Qilu Normal University, Jinan, China.

 
Abstract
 

In allusion to the high-speed electronic energy convergence phenomena, according to the relevant electromagnetic theory as well as the mass-energy and kinetic energy equation of Einstein's special relativity, the study concluded that a moving electronic charge would follow along with its static mass synchronously to be lost. Since an electron can be further broken down, then there should be a kind of more fundamental particles to compose, which can be referred to as "electro-base particles". It should be the electro-ultimate particles whose charge-mass ratio is equal to that of electronic physical constants. A corollary is that all photons radiating from the electrons in a storage ring are composed of the electro-base particles. Then based on de Broglie's matter wave concept, it is pointed out that the high-speed particles' energy convergence effect should be the primary factor in causing spectral redshift. Finally, using HLS 800MeV electron storage ring as an example, we have calculated the moving speed of electrons, and estimated the approximate ranges of the wavelength and static mass. And further, by the aid of a well known experimental fact in the industry but it seems to have been neglected, based on the Law of Energy Conservation, in allusion to the radiated photon whose characteristic wavelength is 2.427 (nm), we have calculated the moving speed and static mass, as well as the deflection radius in the magnetic field. Moreover, to verify whether the above arguments are set up, this paper introduces a method about measuring the wavelength value of electrons in a storage ring.


Keywords
 

Special Relativity, Energy Convergence, Spectral Redshift, Electro-Base Particles, Static Mass, Charge-Mass Ratio


Reference
 
[01]    

Zhang Y Z. Experimental Foundations of Special Relativity[M]. Beijing: Science Press, 1982. (in Chinese)

[02]    

John S. The Collected Papers Of Albert Einstein (Vol. 2)[M]. Fan D N. Changsha: Hunan Science & Technology Press, 2002. (in Chinese)

[03]    

L de Broglie. Physics and Microphysics[M]. Zhu J D. Beijing: The Commercial Press, 1992. (in Chinese)

[04]    

Fan L Z. Would the mass of microscopic particles moving at high speed really be unlimited increase?[J]. Frontier Science, 2009, 3(12): 84-87. (in Chinese)

[05]    

Ji H. Three Experiments Questioning Einsteinian Mechanics and TraditionaI Theory of Accelerators[J]. Frontier Science, 2010, 4(15): 75-79. (in Chinese)

[06]    

Ji H. Experiment of measuring electronic energy with calorimetry method[J]. China Science and Technology Achievements, 2009, (1): 34-35. (in Chinese)

[07]    

L B Okun. The concept of mass[J]. Phys Today, 1989, (6): 31-36.

[08]    

Ma L D, Yang F J. Synchronized Radiation Application Introduction[M]. Sanghai: Fudan University Press, 2002. (in Chinese)

[09]    

Jin Y M. Electron Storage Ring Physics[M]. Hefei: USTC Press, 2001. (in Chinese)

[10]    

Wu S C, Wang Z Q. Modern Physics Experiment[M]. Beijing: Peking University Press, 1995. (in Chinese)

[11]    

Tang X W. Electron Positron Physics[M]. Beijing: Science Press, 1995. (in Chinese)

[12]    

Ni G J, Li H F. Modern Physics[M]. Sanghai: Shanghai science and Technology Press, 1979. (in Chinese)

[13]    

S W Hawking. A Brief History of Time[M]. Xu M X, Wu Z C. Changsha: Hunan Science & Technology Press, 1996. (in Chinese)

[14]    

Wang L. Particle Dynamics Study of Hefei Light Source Storage Ring[D]. Hefei: University of Science and Technology of China, 2006. (in Chinese)

[15]    

Sun Y C. The Study on Measurement System of Loss Beam on Electron Storage Ring[D]. Hefei: University of Science and Technology of China, 2011. (in Chinese)

[16]    

Sun Y C, Lan J Q, Zhang J F, Xu H L, Sun B G. Detection of electron loss due to Touschek effect in Hefei Light Source[J]. High Power Laser and Ppaper Beams, 2011, 23(3): 770-774. (in Chinese)

[17]    

Xu H L, Li J Y, Sun B G, Wang L, Li W M, Liu Z P, He D H. Electron Equilibrium Orbit Adjustment and Closed Orbit Correction in Hefei Electron Storage Ring[J]. Atomic Energy Science and Technology, 2003, 37(1): 1-3. (in Chinese)

[18]    

Tu L C. Experimental Tests of the Photon Rest Mass[D]. Wuhan: Huazhong University of Science and Technology, 2006. (in Chinese)





 
  Join Us
 
  Join as Reviewer
 
  Join Editorial Board
 
share:
 
 
Submission
 
 
Membership