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Observation of spin-electric transitions in a molecular exchange qubit

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arxiv 2403.11214 v1 pith:YZCHJO2T submitted 2024-03-17 cond-mat.mes-hall quant-ph

classification cond-mat.mes-hallquant-ph
keywords spintransitionsmolecularspin-electricexchangequbitallowsapplies
verification ladder T0 review T1 audit T2 compute T3 formal
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Electric fields represent an ideal means for controlling spins at the nanoscale and, more specifically, for manipulating protected degrees of freedom in multispin systems. Here we perform low-temperature magnetic far-IR spectroscopy on a molecular spin triangle (Fe3) and provide the first experimental evidence of spin-electric transitions in polynuclear complexes. The co-presence of electric- and magnetic-dipole transitions, allows us to estimate the spin-electric coupling. Based on spin Hamiltonian simulations of the spectra, we identify the observed transitions and introduce the concept of a generalized exchange qubit. This applies to a wide class of molecular spin triangles, and includes the scalar chirality and the partial spin sum qubits as special cases.

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