English

Emergence of Spinmerism for Molecular Spin-Qubits Generation

Quantum Physics 2022-12-07 v2

Abstract

Molecular platforms are regarded as promising candidates in the generation of units of information for quantum computing. Herein, a strategy combining spin-crossover metal ions and radical ligands is proposed from a model Hamiltonian first restricted to exchange interactions. Unusual spin states structures emerge from the linkage of a singlet/triplet commutable metal centre with two doublet-radical ligands. The ground state nature is modulated by charge transfers and can exhibit a mixture of triplet and singlet local metal spin states. Besides, the superposition reaches a maximum for 2KM=K1+K22K_M = K_1 + K_2, suggesting a necessary competition between the intramolecular KMK_M and inter-metal-ligand K1K_1 and K2K_2 direct exchange interactions. The results promote \textit{spinmerism}, an original manifestation of quantum entanglement between the spin states of a metal centre and radical ligands. The study provides insights into spin-coupled compounds and inspiration for the development of molecular spin-qubits.

Keywords

Cite

@article{arxiv.2206.03978,
  title  = {Emergence of Spinmerism for Molecular Spin-Qubits Generation},
  author = {Roseiro Pablo and Petit Louis and Robert Vincent and Yalouz Saad},
  journal= {arXiv preprint arXiv:2206.03978},
  year   = {2022}
}