From the 1 of 14 linked papers with an AI index.
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Collective intermolecular Coulombic decay beyond Coulomb
Alan G. Falkowski, Lorenz S. Cederbaum
Intermolecular Coulombic decay (ICD) is a widely spread phenomenon in nature and laboratory in which the excess energy of a donor is utilized to ionize a nearby acceptor. If the ex…
Polaritons of inherently interacting molecules
Gábor J. Halász, Csaba Fábri, Lorenz S. Cederbaum +1
We investigate the absorption spectra of molecular ensembles strongly coupled to a Fabry-Pérot cavity and establish the microscopic origin of collective polaritonic bands. We show…
Intriguing Electronic Structures of C8 and C12 Carbon Rings
Yi-Fan Yang, Di Liu, Zhong-Hua Cui +2
The paper investigates the ground and excited electronic states of C8 and C12 carbon rings, revealing a transition from polyynic double anti‑aromatic structures in the ground state…
Nuclear Spin Isomers and the Pauli Principle in Polaritonic Chemistry
Csaba Fábri, Gábor J. Halász, Lorenz S. Cederbaum +1
The Pauli principle has far-reaching consequences in quantum physics. Here, we investigate, for the first time, its implications, together with nuclear spin isomerism, in polariton…
Hitherto unrecognized intermolecular Coulombic decay mechanism in gases
Alan G. Falkowski, Alexander I. Kuleff, Lorenz S. Cederbaum
Excited atoms and molecules can utilize their excess energy to ionize a neighboring system by a process named interatomic and intermolecular Coulombic decay (ICD). ICD is ultrafast…
Impact of dipole self-energy on cavity-induced nonadiabatic dynamics
Csaba Fábri, Gábor J. Halász, Jaroslav Hofierka +2
The coupling of matter to the quantized electromagnetic field of a plasmonic or optical cavity can be harnessed to modify and control chemical and physical properties of molecules.…