Precision measurement of electronic ion-ion interactions between neighboring Eu3+ optical centers. Ahlefeldt, R., McAuslan, D., Longdell, J., Manson, N., & Sellars, M. Physical Review Letters, 2013. cited By 3
Precision measurement of electronic ion-ion interactions between neighboring Eu3+ optical centers [link]Paper  doi  abstract   bibtex   
We report measurements of discrete excitation-induced frequency shifts on the F07→D05 transition of the Eu3+ center in La:Lu:EuCl 3·6D2O resulting from the optical excitation of neighboring Eu3+ ions. Shifts of up to 46.081±0.005 MHz were observed. The magnitude of the interaction between neighboring ions was found to be significantly larger than expected from the electric dipole-dipole mechanism often observed in rare earth systems. We show that a large network of interacting and individually addressable centers can be created by lightly doping crystals otherwise stoichiometric in the optically active rare earth ion, and that this network could be used to implement a quantum processor with more than ten qubits. © 2013 American Physical Society.
@ARTICLE{Ahlefeldt2013,
author={Ahlefeldt, R.L.a  and McAuslan, D.L.b  and Longdell, J.J.c  and Manson, N.B.a  and Sellars, M.J.a },
title={Precision measurement of electronic ion-ion interactions between neighboring Eu3+ optical centers},
journal={Physical Review Letters},
year={2013},
volume={111},
number={24},
doi={10.1103/PhysRevLett.111.240501},
art_number={240501},
note={cited By 3},
url={https://www.scopus.com/inward/record.uri?eid=2-s2.0-84890277155&partnerID=40&md5=5ca5b081594215396e8efa8c3b36b56d},
affiliation={Centre for Quantum Computation and Communication Technology, Research School of Physics and Engineering, Australian National University, Canberra, ACT 0200, Australia; Centre for Engineered Quantum Systems, University of Queensland, St. Lucia, Brisbane, QLD 4072, Australia; Jack Dodd Centre for Quantum Technology, Department of Physics, University of Otago, P.O. Box 56, North-Dunedin 9016, New Zealand},
abstract={We report measurements of discrete excitation-induced frequency shifts on the F07→D05 transition of the Eu3+ center in La:Lu:EuCl 3·6D2O resulting from the optical excitation of neighboring Eu3+ ions. Shifts of up to 46.081±0.005 MHz were observed. The magnitude of the interaction between neighboring ions was found to be significantly larger than expected from the electric dipole-dipole mechanism often observed in rare earth systems. We show that a large network of interacting and individually addressable centers can be created by lightly doping crystals otherwise stoichiometric in the optically active rare earth ion, and that this network could be used to implement a quantum processor with more than ten qubits. © 2013 American Physical Society.},
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document_type={Article},
source={Scopus},
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