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Exciton-defect interaction and optical properties from a first-principles T-matrix approach

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arxiv 2505.15523 v1 pith:RLDDVULE submitted 2025-05-21 cond-mat.mtrl-sci cond-mat.mes-hall

Exciton-defect interaction and optical properties from a first-principles T-matrix approach

classification cond-mat.mtrl-sci cond-mat.mes-hall
keywords exciton-defectopticalpropertiesapproachfirst-principlest-matrixinteractionsmaterials
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Understanding exciton-defect interactions is critical for optimizing optoelectronic and quantum information applications in many materials. However, ab initio simulations of material properties with defects are often limited to high defect density. Here, we study effects of exciton-defect interactions on optical absorption and photoluminescence spectra in monolayer MoS2 using a first-principles T-matrix approach. We demonstrate that exciton-defect bound states can be captured by the disorder-averaged Green's function with the T-matrix approximation and further analyze their optical properties. Our approach yields photoluminescence spectra in good agreement with experiments and provides a new, computationally efficient framework for simulating optical properties of disordered 2D materials from first-principles.

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