维普中文期刊产品整合服务
12篇 您的检索式:作者名="Sudipta C"
    题名 作者 年代 出处 被引量
1Microbial biomass and itsactivities in salt-affected coastal soils 显示文摘SUDIPTA T SABITRI K ASHIS C 2006Biology and Fertility ofSoils2006,42,:1
2A comparison of conventionaltube test and gel technique in evaluation of direct antiglobulin test显示文摘Sudipta S Rajendra C Dheeraj K 2007Hematology2007,12,2:1
3Enzyme activities and microbial biomass in coastal soils of India显示文摘Sudipta T Ashis C Kalyan C 2007Soil Biology & Biochemistry2007,39,:1
4Utility of adsorption techniques in serological evaluation of warm autoimmune haemolytic anaemia显示文摘Sudipta SD Rajendra C 2009Blood Transfus2009,7,9:1
5Adsorption of a mod- el anionic dye, eosin Y, from aqueous solution by chitosan hydrobeads显示文摘Sudipta C Sandipan C Bishnu P C 2005Journal of Colloid Interface Science2005,288,1:1
6Water-extracted polysaccharides from Azadirachta indicaleaves:Structural features chemical modification and an-ti-bovine herpes virus type 1(BoHV-1)activity显示文摘Saha Sudipta Ligia Galhardi C F Yamamoto Kristie A 2010IntJ Biol Macromol2010,47,5:1
7A New Interpretation of Nonlinear Energy Operator and Its Efficacy in Spike Detection显示文摘Sudipta Mukhopadhyay Ray G C 1998IEEE Transactions on Biomedical Engineering1998,45,2:1
8Enzyme activities and microbial biomass in coastal soils of India显示文摘] Sudipta T Ashis C Kalyan C 2007Soil Biology and Biochemistry2007,39,:1
9Detection of power quality disturbances using wavelet transform 显示文摘SUDIPTA N Arindam D Abhijit C 2009World Academyof Science Engineering and Technology2009,49,:1
10Distributed intelligent energy management system for a single-phase high-frequency AC microgrid显示文摘Sudipta C Manoja D W M G Simoes 2007IEEE Transactions on Industrial Electronics2007,54,1:1
11A novel IGCC plant with membrane oxygen separation and carbon capture by carbonation-calcinations loop 显示文摘Kunze C Sudipta De Spliethoff H 2011International Journal of Greenhouse Gas Control2011,5,5:1
12On chip chiral and plasmonic hybrid dimer or tetramer:Generic way to reverse longitudinal and lateral optical binding forces显示文摘For both the longitudinal binding force and the lateral binding force,a generic way of controlling the mutual attraction and repulsion(usually referred to as reversal of optical binding force)between chiral and plasmonic hybrid dimers or tetramers has not been reported so far.In this paper,by using a simple plane wave and an onchip configuration,we propose a possible generic way to control the binding force for such hybrid objects in both the near-field region and the far-field region.We also investigate different inter-particle distances while varying the wavelengths of light for each inter-particle distance throughout the investigations.First of all,for the case of longitudinal binding force,we find that chiral-plasmonic hybrid dimer pairs do not exhibit any reversal of optical binding force in the near-field region nor in the far-field region when the wavelength of light is varied in an air medium.However,when the same hybrid system of nanoparticles is placed over a plasmonic substrate,a possible chip,it is possible to achieve a reversal of the longitudinal optical binding force.Later,for the case of lateral optical binding force,we investigate a setup where we place the chiral and plasmonic tetramers on a plasmonic substrate by using two chiral nanoparticles and two plasmonic nanoparticles,with the setup illuminated by a circularly polarized plane wave.By applying the left-handed and the right-handed circular polarization state of light,we also observe the near-field and the far-field reversal of lateral optical binding force for both cases.As far as we know,so far,no work has been reported in the literature on the generic way of reversing the longitudinal optical binding force and the lateral optical binding force of such hybrid objects.Such a generic way of controlling optical binding forces can have important applications in different fields of science and technology in the near future.Sudipta Biswas Roksana Khanam Rumi Tasnia Rahman Raima Saikat Chandra Das M R C Mahdy 2022Chinese Physics B2022,31,5:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费