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Paper Information

Journal:   JOURNAL OF NANOSTRUCTURES   JUNE 2012 , Volume 2 , Number 1; Page(s) 125 To 129.
 
Paper: 

The Binding Energy Of Diquark-Antidiquark System In Nanometer And Subnanometer Scales

 
 
Author(s):  Sadeghi Alavijeh P., Monemzadeh M.*, Tazimi N.
 
* DEPARTMENT OF PHYSICS, UNIVERSITY OF KASHAN, KASHAN, I.R. IRAN
 
Abstract: 
In this paper, using Monte Carlo Fortran code, we have obtained the binding energies for three different systems of diquark–antidiquark in distances from 0.01 to 15 nm. In [0.1-15] nm interval, we made use of Coulomb potential because in this interval, strong interaction is negligible. We have compared the binding energies of the systems with one another. The results of these comparisons were close to our anticipations. We also obtained the binding energy of one of the systems in the interval below 1 fm, where diquark-antidiquark systems comprise a tetraquark and the potential is of strong interaction type. Because of weak Coulomb interaction, strong interaction has been used as the basis of the calculations. The binding energy resulted is consistent with the existing references.
 
Keyword(s): TETRAQUARK SYSTEM, LIPPMAN-SCHOWINGER, EQUATION, BINDING ENERGY
 
 
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APA: Copy

SADEGHI ALAVIJEH, P., & MONEMZADEH, M., & TAZIMI, N. (2012). THE BINDING ENERGY OF DIQUARK-ANTIDIQUARK SYSTEM IN NANOMETER AND SUBNANOMETER SCALES. JOURNAL OF NANOSTRUCTURES, 2(1), 125-129. https://www.sid.ir/en/journal/ViewPaper.aspx?id=330778



Vancouver: Copy

SADEGHI ALAVIJEH P., MONEMZADEH M., TAZIMI N.. THE BINDING ENERGY OF DIQUARK-ANTIDIQUARK SYSTEM IN NANOMETER AND SUBNANOMETER SCALES. JOURNAL OF NANOSTRUCTURES. 2012 [cited 2022January29];2(1):125-129. Available from: https://www.sid.ir/en/journal/ViewPaper.aspx?id=330778



IEEE: Copy

SADEGHI ALAVIJEH, P., MONEMZADEH, M., TAZIMI, N., 2012. THE BINDING ENERGY OF DIQUARK-ANTIDIQUARK SYSTEM IN NANOMETER AND SUBNANOMETER SCALES. JOURNAL OF NANOSTRUCTURES, [online] 2(1), pp.125-129. Available: https://www.sid.ir/en/journal/ViewPaper.aspx?id=330778.



 
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