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Boundary Charges at Null Infinity; Asymptotic symmetries, Memory effects and Conformal Structure

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dc.contributor.advisor Aghapour, Sajad
dc.contributor.author M, ANANDH KRISHNA
dc.date.accessioned 2026-05-19T11:06:26Z
dc.date.available 2026-05-19T11:06:26Z
dc.date.issued 2026-05
dc.identifier.citation 141 en_US
dc.identifier.uri http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/11063
dc.description.abstract This thesis studies the geometry of asymptotically flat spacetimes with null infinity as the primary arena for gravitational radiation and observables. Using Bondi–Sachs and conformal Gaussian null coordinates, it analyses the BMS symmetry group, flux–balance laws, and the gravitational memory effect. The work examines the supertranslation ambiguity in angular momentum, discusses recent quasilocal correction terms linking the shear potential to the Bondi mass aspect. In addition to the theoretical analysis, a suite of computational tools has been developed using the xAct tensor algebra framework in Mathematica. These implementations reproduce and extend BMS calculations for four-dimensional asymptotically flat spacetimes and provide a flexible platform for exploring analogous structures in higher dimensions, where the asymptotic symmetry structure differs qualitatively from the four-dimensional case. Future directions include a conformal GHP treatment for a more geometrical view point intrinsic to J, with gauge independence. en_US
dc.language.iso en en_US
dc.subject Memory effect en_US
dc.subject Asymptotic symmetries en_US
dc.subject Asymptotically flat spacetime en_US
dc.title Boundary Charges at Null Infinity; Asymptotic symmetries, Memory effects and Conformal Structure 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 20211031 en_US


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  • MS THESES [2219]
    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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