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Anisotropy dependent Relaxation of Topologically-modified polymers

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dc.contributor.advisor CHATTERJI, APRATIM
dc.contributor.author PATEL, DHRUV
dc.date.accessioned 2025-05-19T05:19:07Z
dc.date.available 2025-05-19T05:19:07Z
dc.date.issued 2025-05
dc.identifier.citation 105 en_US
dc.identifier.uri http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/9970
dc.description.abstract This thesis is an investigation of relaxation dynamics of topologically modified polymers. We work with modified ring polymer systems whose importance have been shown in pre vious work where these topologies are able to explain the spatiotemporal organization of the chromosome inside the E.Coli bacterial cell. The effect of these polymer topologies on the emergent properties and dynamics of the chromosomes is yet unknown. In order to understand that, one first needs to understand the dynamical properties of the individual topologically modified polymers and how cross-links affect these properties. This demands a more robust and systematic study of the dynamics of these complex systems. Herein, we will also present the shortcomings of the End-to-End vectors method to study the relaxation time of the polymers because of the ambiguity that arises while choosing vectors in more complicated topologies. Then I will present two global methods to study the dynamics. Importantly, these global methods - the correlation in fluctuations of radius of gyration and time autocorrelation of eigenvectors of gyration tensor - does not depend on the intricate structural/topological details of the polymer topology. And hence, provides us a mechanism to study any form of complex topology by overcoming the problems with end-to-end vector method. Later in the thesis we also explain the properties of the relaxation dynamics for different ratios of Dumbbell architecture (two loops formed by adding a crosslink between two monomers of ring polymer) and Arc1 2 architectures (three loops formed via adding two additional cross links in ring polymer) by correlating it with the Anisotropy or the aspheric ity of the polymer. This also lead us to a scaling relation between the relaxation time and Anisotropy of the polymer. en_US
dc.language.iso en en_US
dc.subject Research Subject Categories::TECHNOLOGY::Engineering physics::Biophysics en_US
dc.subject Research Subject Categories::NATURAL SCIENCES::Physics::Other physics::Statistical physics en_US
dc.subject Research Subject Categories::NATURAL SCIENCES::Physics::Other physics::Computational physics en_US
dc.title Anisotropy dependent Relaxation of Topologically-modified polymers en_US
dc.type Thesis en_US
dc.description.embargo One Year en_US
dc.type.degree BS-MS en_US
dc.contributor.department Dept. of Physics en_US
dc.contributor.registration 20201087 en_US


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  • MS THESES [1970]
    Thesis submitted to IISER Pune in partial fulfilment of the requirements for the BS-MS Dual Degree Programme/MSc. Programme/MS-Exit Programme

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