Surface adsorption of TbL1 and TmL1 on a monolayer of MoSSe: A theoretical study
ORAL
Abstract
In this work, we study the surface adsorption of two mononuclear lanthanide complexes, TbL1 and TmL1 (with L = C33H33N4O3), on a monolayer of MoSSe. Stable adsorption configurations are examined using a combination of methods, including the Lennard-Jones force field, the PM7 semi-empirical method, and density functional theory. The crystal field splitting of low-lying energy levels is calculated using the complete active space self-consistent field method before and after surface adsorption. The lowest-lying energy levels of both TbL1 and TmL1 correspond to a total angular momentum of J = 6. For an isolated TbL1, the ground state is dominated by mJ = 0, with the first and second excited states being quasi-degenerate. After surface adsorption, this quasi-degeneracy is broken, resulting in a quasi-doublet formed by the ground state and the first excited state. For TmL1, the ground state and the first excited state are consistently dominated by mJ = ±6, regardless of the presence of the MoSSe substrate. The quasi-doublet of TmL1 becomes more separated from the higher energy levels after surface adsorption, which is desirable for quantum information applications. Spin-phonon coupling in these systems will be studied in the next step.
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Presenters
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Shuanglong Liu
Northeastern University
Authors
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Shuanglong Liu
Northeastern University
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James N Fry
Northeastern University
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Michael Shatruk
Florida State University
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Hai-Ping Cheng
Northeastern University