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Towards CP Violation Studies on Superheavy Molecules: Theoretical and Experimental Perspective

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arxiv 2108.11909 v1 pith:MY4QYFTQ submitted 2021-08-26 physics.atom-ph physics.chem-ph

classification physics.atom-phphysics.chem-ph
keywords moleculessuperheavycontainingelectricexperimentalsystemstheoreticaltimes
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Molecules containing superheavy atoms can be artificially created to serve as sensitive probes for study of symmetry-violating phenomena. Here, we provide a detailed theoretical study for diatomic molecules containing the superheavy lawrencium nuclei. The sensitivity to time-reversal violating properties was studied for different neutral and ionic molecules. The effective electric fields in these systems were found to be about 3-4 times larger than other known molecules on which electron electric dipole moment experiments are being performed. Similarly, these superheavy molecules exhibit an enhancement of more than 5 times for parity- and time-reversal-violating scalar-pseudoscalar nucleus-electron interactions. We also briefly comment on some experimental aspects by discussing the production of these systems.

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