Showing 161 - 180 results of 5,049 for search '(( via ((((teer decrease) OR (mean decrease))) OR (larger decrease)) ) OR ( via large increased ))', query time: 0.86s Refine Results
  1. 161
  2. 162

    RNN models. by Zhaohui Xia (9406284)

    Published 2022
    Subjects:
  3. 163
  4. 164

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  5. 165

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  6. 166

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  7. 167

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  8. 168

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  9. 169

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  10. 170

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  11. 171

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  12. 172

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  13. 173

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  14. 174

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  15. 175

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  16. 176

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  17. 177

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
  18. 178

    Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits by Arun Ramanathan (9992643)

    Published 2023
    “…Herein, the magnitude of the CF is increased via control of the RE oxidation state. The enhanced 4f metal–ligand covalency in Pr<sup>4+</sup> gives rise to CF energy scales that compete with the spin–orbit coupling of Pr<sup>4+</sup> and thereby shifts the paradigm from the ionic ζ<sub>SOC</sub> ≫ <i>V</i><sub>CF</sub> limit, used to describe trivalent RE-ion, to an intermediate coupling (IC) regime. …”
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    Proportion of new cases transmitted via each route after an increase of indirect truck share parameter (<i>ψ</i>) by a factor of 4 (×4 Indirect), 10 (×10 Indirect), 50 (×50 Indirect), and 100 (×100 Indirect) for only simulations with large outbreaks and an APP introduction of May 2019. by Kathleen Moriarty (16275755)

    Published 2025
    “…<p>Proportion of new cases transmitted via each route after an increase of indirect truck share parameter (<i>ψ</i>) by a factor of 4 (×4 Indirect), 10 (×10 Indirect), 50 (×50 Indirect), and 100 (×100 Indirect) for only simulations with large outbreaks and an APP introduction of May 2019.…”