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Hubbard Model in a Cavity for a Diatomic Molecule

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dc.contributor.advisor Zuchowski, Piotr
dc.contributor.advisor Mukherjee, Saikat
dc.contributor.author ROY, SAYANTAN
dc.date.accessioned 2026-05-20T05:35:28Z
dc.date.available 2026-05-20T05:35:28Z
dc.date.issued 2026-05
dc.identifier.citation 52 en_US
dc.identifier.uri http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/11069
dc.description.abstract In this work, we investigated light–matter interactions using the Hubbard dimer as a minimal two-site model representing a diatomic molecule. To incorporate the light–matter coupling, we employed the well-established Pauli–Fierz (PF) Hamilto- nian, which is applicable across both weak and strong coupling regimes, whereas the Jaynes–Cummings model is restricted to the weak coupling limit. We systematically analyzed both the weak and strong coupling limits, including the convergence behavior of the block structure within the P–F Hamiltonian. The study encompassed the characterization of energy levels (polaritonic potential energy surfaces) as functions of key Hubbard parameters, along with an examination of charge fluctuations and the average photon number associated with each eigenstate, and their dependence on the light–matter coupling strength. Furthermore, we explored the time evolution of the system under various condi- tions to gain insight into its dynamical behavior. Finally, we extended our framework to a realistic molecular system, lithium hydride (LiH), and investigated its polaritonic potential energy surfaces within the same theoretical formalism. en_US
dc.language.iso en en_US
dc.subject Polaritonic Chemistry, Hubbard Dimer en_US
dc.subject Polaritonic Chemistry en_US
dc.subject Hubbard Dimer en_US
dc.title Hubbard Model in a Cavity for a Diatomic Molecule en_US
dc.type Thesis en_US
dc.description.embargo One Year en_US
dc.type.degree MSc. en_US
dc.contributor.department Dept. of Physics en_US
dc.contributor.registration 20246707 en_US


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  • MS THESES [2220]
    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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