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Electronic Polarization Effects in Core-Level Spectroscopy

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arxiv 2306.12825 v1 pith:NJTLPD7M submitted 2023-06-22 cond-mat.mes-hall physics.atom-phphysics.comp-ph

Electronic Polarization Effects in Core-Level Spectroscopy

classification cond-mat.mes-hall physics.atom-phphysics.comp-ph
keywords polarizationelectronicenergyatomclusterscore-leveleffectshole
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In X-ray photoelectron spectroscopy (XPS), the injected hole interacts with the electronic polarization cloud induced by the hole itself, ultimately resulting in a lower binding energy. Such polarization effect can shift the core-level energy by more than 1 eV, as shown here by embedded many-body perturbation theory for the paradigmatic case of noble gas clusters made of Ar, Kr, or Xe. The polarization energy is almost identical for the different core-orbitals of a given atom, but it strongly depends on the position of the ionized atom in the cluster. An analytical formula is derived from classical continuum electrostatics, providing an effective and accurate description of polarization effects, which permits to achieve an excellent agreement with available experiments on noble gas clusters at a modest computational cost. Electronic polarization provides a crucial contribution to core levels absolute energies and chemical shifts.

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