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10篇 您的检索式:作者名="Joni R"
    题名 作者 年代 出处 被引量
1Characterizing search spaces for tabu search,currently under second review 显示文摘 Jeffrey A Jonies Michael G Kay 1999European Journal of Operational Research1999,,:1
2Consumer Responses to Complex Advertisements:The Moderating Role of Need for Cognition,Knowledge,and Gender显示文摘Putrevu Sanjay Joni Tan Kenneth R Lord 2004Journal of Current Issues and Research in Advertising2004,26,1:1
3Spatial structures of soil organic carbon in tropical forcst-A case study of southeastern Tanza-nia 显示文摘Joni R Annelies G Bruno D 2009Catena2009,77,:1
4On the use of non-stationary penalty functions to solve nonlinear constrained optimization problems with GA's显示文摘Jonies J A Houck R C 0,,02:1
5Variability in automat- ic activation as an unobtrusive measure of racial attitudes: A bona fide pipeline? 显示文摘Russell H F Joni R J Bridget C 1995Journal of Personality and Social Psychology1995,69,6:1
6On the use of non-stationary penalty functions to solve nonlinear constrained optimization problems with GA's显示文摘Jonies J A Houck R C 1994Proc IEEE Int of Evol Comp1994,26,2:1
7Longitudinal Cracking Distress on Continuously Reinforced Concrete Pavements in Illinois显示文摘Jeffery R Roesler John S Joni L 0,,06:1
8Idiopathic sudden sensorineural hearing loss:vascular or viral?显示文摘FRED H LINTHICUM J R JONI D 2013Otolaryngol Head Neck Surg2013,149,:1
9Dielectric or plasmonic Mie object at air–liquid interface: The transferred and the traveling momenta of photon显示文摘Considering the inhomogeneous or heterogeneous background, we have demonstrated that if the background and the half-immersed object are both non-absorbing, the transferred photon momentum to the pulled object can be considered as the one of Minkowski exactly at the interface. In contrast, the presence of loss inside matter, either in the half-immersed object or in the background, causes optical pushing of the object. Our analysis suggests that for half-immersed plasmonic or lossy dielectric, the transferred momentum of photon can mathematically be modeled as the type of Minkowski and also of Abraham. However, according to a final critical analysis, the idea of Abraham momentum transfer has been rejected. Hence,an obvious question arises: whence the Abraham momentum? It is demonstrated that though the transferred momentum to a half-immersed Mie object(lossy or lossless) can better be considered as the Minkowski momentum, Lorentz force analysis suggests that the momentum of a photon traveling through the continuous background, however, can be modeled as the type of Abraham. Finally, as an interesting sidewalk, a machine learning based system has been developed to predict the time-averaged force within a very short time avoiding time-consuming full wave simulation.M R C Mahdy Hamim Mahmud Rivy Ziaur Rahman Jony Nabila Binte Alam Nabila Masud Golam Dastegir Al Quaderi Ibraheem Muhammad Moosa Chowdhury Mofizur Rahman M Sohel Rahman 2020Chinese Physics B2020,29,1:0
10Stable Fano-like plasmonic resonance: its impact on the reversal of far-and near-field optical binding force显示文摘Even for a 100 nm interparticle distance or a small change in particle shape,optical Fano-like plasmonic resonance mode usually vanishes completely.It would be remarkable if stable Fano-like resonance could somehow be achieved in distinctly shaped nanoparticles for more than 1μm interparticle distance,which corresponds to the far electromagnetic field region.If such far-field Fano-like plasmonic resonance can be achieved,controlling the reversal of the far-field binding force can be attained,like the currently reported reversals for near-field cases.In this work,we have proposed an optical set-up to achieve such a robust and stable Fano-like plasmonic resonance,and comparatively studied its remarkable impact on controlling the reversal of near-and far-field optical binding forces.In our proposed set-up,the distinctly shaped plasmonic tetramers are half immersed(i.e.air-benzene)in an inhomogeneous dielectric interface and illuminated by?circular?polarized light.We have demonstrated significant differences between near-and far-field optical binding forces along with the Lorentz force field,which partially depends on the object’s shape.A clear connection is shown between the far-field binding force and the resonant modes,along with a generic mechanism to achieve controllable Fano-like plasmonic resonance and the reversal of the optical binding force in both far-and near-field configurations.Hamim Mahmud Rivy M R C Mahdy Nabila Masud Ziaur Rahman Jony Saikat Chandra Das 2020Communications in Theoretical Physics2020,72,4:0
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