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Planar System-Masses in an Equilateral Triangle:Numerical Study within Fractional Calculus 被引量:5
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作者 Dumitru Baleanu Behzad Ghanbari +2 位作者 Jihad H.Asad Amin Jajarmi Hassan Mohammadi Pirouz 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第9期953-968,共16页
In this work,a system of three masses on the vertices of equilateral triangle is investigated.This system is known in the literature as a planar system.We first give a description to the system by constructing its cla... In this work,a system of three masses on the vertices of equilateral triangle is investigated.This system is known in the literature as a planar system.We first give a description to the system by constructing its classical Lagrangian.Secondly,the classical Euler-Lagrange equations(i.e.,the classical equations of motion)are derived.Thirdly,we fractionalize the classical Lagrangian of the system,and as a result,we obtain the fractional Euler-Lagrange equations.As the final step,we give the numerical simulations of the fractional model,a new model which is based on Caputo fractional derivative. 展开更多
关键词 Planar system masses in equilateral triangle SPRINGS Euler-Lagrange equations fractional derivative
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Formation Mechanism and Binding Energy for Equilateral Triangle Structure of He3^+ Cluster 被引量:6
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作者 GOU Qing-Quan ZHANG Jian-Ping LI Ping 《Communications in Theoretical Physics》 SCIE CAS CSCD 2002年第5期597-600,共4页
The formation mechanism for the equilateral triangle structure of the He-3(+) cluster is proposed. The curve of the total energy versus the internuclear distance R for this structure has been calculated by the method ... The formation mechanism for the equilateral triangle structure of the He-3(+) cluster is proposed. The curve of the total energy versus the internuclear distance R for this structure has been calculated by the method of a modified arrangement channel quantum mechanics. The result shows that the curve has a minimal -7.81373 a. u at R = 1.55 a(0). The binding energy of He-3(+) with respect to He+He++He was calculated to be 0.1064 a.u. (about 2.89 eV). This means that the He-3(+) cluster may be formed in the equilateral triangle structure stably by the interaction of He+ with two helium atoms. 展开更多
关键词 He-3(+) cluster binding energy equilateral triangle structure
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Formation Mechanism and Binding Energy for Equilateral Triangle Structure of Li3 Cluster 被引量:1
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作者 YANG Jian-Hui LI Ping GOU Qing-Quan 《Communications in Theoretical Physics》 SCIE CAS CSCD 2005年第3X期525-528,共4页
The formation mechanism for the equilateral triangle structure of Lia cluster is proposed. The curve of the total energy versus the interatomic distance for this structure has been calculated by using the method of Go... The formation mechanism for the equilateral triangle structure of Lia cluster is proposed. The curve of the total energy versus the interatomic distance for this structure has been calculated by using the method of Gou's Modified Arrangement Channel Quantum Mechanics. The result shows that the curve has a minimal energy of-22.338 60 a.u at R = 5.82 ao. The total energy of Lia when R approaches co has the value of-22.284 09 a.u. This is also the total energy of three lithium atoms dissociated from Lia. The difference value of 0.0545 08 a.u. for the above two energy values is the dissociation energy of Li3 cluster, which is also its binding energy. Therefore the binding energy per lithium atom for Lia is 0.018 169 a.u. = 0.494 eV, which is greater than the binding energy of 0.453 eV per atom for Li2 calculated in a previous work. This means that the Li3 cluster may be formed in the equilateral triangle structure of side length R = 5.82ao stably with a stronger binding from the symmetrical interaction among the three lithium atoms. 展开更多
关键词 Li3 cluster binding energy equilateral triangle structure
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Study of Mode Characteristics for Equilateral Triangle Semiconductor Microlasers 被引量:2
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作者 Qiao-Yin Lu, Xiao-Hong Chen, Wei-Hua Guo, Li-Juan Yu, Yong-Zhen Huang State Key Laboratory on Integrated Optoelectronics, Institute of Semiconductors, Chinese Academy of Sciences, P.O. Box 912, Beijing 100083, China, Tel: 010-82304524, E-mail: luqy@redsemi.ac.cnJian Wang and Yi LuoState Key Laboratory of Integrated Optoelectronics, Department of Electronic Engineering, Tsinghua University, Beijing 100084, China 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期329-330,共2页
InGaAsP semiconductor ETR microlasers with side length of 5 and 10 um are fabricated by ICP etching. The peaks in photoluminenscent spectra corresponding to longitudinal modes are observed with the interval consisting... InGaAsP semiconductor ETR microlasers with side length of 5 and 10 um are fabricated by ICP etching. The peaks in photoluminenscent spectra corresponding to longitudinal modes are observed with the interval consisting with the theoretical formulae. 展开更多
关键词 for in on with ICP Study of Mode Characteristics for equilateral triangle Semiconductor Microlasers of
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Geometric Characterizations for Variational Minimization Solutions of the 3-Body Problem 被引量:3
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作者 Yiming Long Nankai Institute of Mathematics. Nankai University. Tianjin 300071. P. R. China Shiqing Zhang Department of Applied Mathematics Chongqing University. Chongqing 40004, P.R. China 《Acta Mathematica Sinica,English Series》 SCIE CSCD 2000年第4期579-592,共14页
In this paper, we prove that for any given positive masses the variational minimization solutions of the 3-body problem in R^3 or R^2 are precisely the planar equilateral triangle circular solutions found by J. Lagran... In this paper, we prove that for any given positive masses the variational minimization solutions of the 3-body problem in R^3 or R^2 are precisely the planar equilateral triangle circular solutions found by J. Lagrange in 1772, and that the variational minimization solutions of the circular rostricted 3-body problem in R^3 or R^2 are also planar equilateral triangle circular solutions. 展开更多
关键词 3-body problem Restricted 3-body problem Variational minimization equilateral triangle circular solution
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