Search alternatives:
greatest decrease » treatment decreased (Expand Search), greater increase (Expand Search)
greater decrease » greater increase (Expand Search), greater increases (Expand Search), rate decreased (Expand Search)
b large » _ large (Expand Search), a large (Expand Search), i large (Expand Search)
greatest decrease » treatment decreased (Expand Search), greater increase (Expand Search)
greater decrease » greater increase (Expand Search), greater increases (Expand Search), rate decreased (Expand Search)
b large » _ large (Expand Search), a large (Expand Search), i large (Expand Search)
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Increasing overlap strength can foster cooperation.
Published 2025“…<b>h</b>, Comparison of critical synergy factors for increasing overlap strengths under the same mechanisms as in <b>d</b>. …”
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Increasing consumption density leads to social inequality.
Published 2020“…As consumption density increases, such a resource-consumption strategy becomes unsustainable, leading to a diversification of strategies into frugal sedentary consumers with low harvesting rates and near-zero dispersal radii, and overexploitative mobile consumers with high harvesting rates and large dispersal radii. …”
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Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits
Published 2023“…We demonstrate a relatively large hyperfine interaction of <i>A</i><sub>iso</sub> = 1800 MHz for Pr<sup>4+</sup>, coherent manipulation of the spin with <i>Q</i><sub>M</sub> = 2Ω<sub>R</sub><i>T</i><sub>m</sub>, reaching up to ∼400 for <b>0.1Pr:BSO</b> at <i>T</i> = 5 K, and significant improvement of the temperature at which <i>T</i><sub>m</sub> is limited by <i>T</i><sub>1</sub> (<i>T</i>* = 60 K) compared to other RE ion qubits.…”
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Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits
Published 2023“…We demonstrate a relatively large hyperfine interaction of <i>A</i><sub>iso</sub> = 1800 MHz for Pr<sup>4+</sup>, coherent manipulation of the spin with <i>Q</i><sub>M</sub> = 2Ω<sub>R</sub><i>T</i><sub>m</sub>, reaching up to ∼400 for <b>0.1Pr:BSO</b> at <i>T</i> = 5 K, and significant improvement of the temperature at which <i>T</i><sub>m</sub> is limited by <i>T</i><sub>1</sub> (<i>T</i>* = 60 K) compared to other RE ion qubits.…”
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Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits
Published 2023“…We demonstrate a relatively large hyperfine interaction of <i>A</i><sub>iso</sub> = 1800 MHz for Pr<sup>4+</sup>, coherent manipulation of the spin with <i>Q</i><sub>M</sub> = 2Ω<sub>R</sub><i>T</i><sub>m</sub>, reaching up to ∼400 for <b>0.1Pr:BSO</b> at <i>T</i> = 5 K, and significant improvement of the temperature at which <i>T</i><sub>m</sub> is limited by <i>T</i><sub>1</sub> (<i>T</i>* = 60 K) compared to other RE ion qubits.…”
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Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits
Published 2023“…We demonstrate a relatively large hyperfine interaction of <i>A</i><sub>iso</sub> = 1800 MHz for Pr<sup>4+</sup>, coherent manipulation of the spin with <i>Q</i><sub>M</sub> = 2Ω<sub>R</sub><i>T</i><sub>m</sub>, reaching up to ∼400 for <b>0.1Pr:BSO</b> at <i>T</i> = 5 K, and significant improvement of the temperature at which <i>T</i><sub>m</sub> is limited by <i>T</i><sub>1</sub> (<i>T</i>* = 60 K) compared to other RE ion qubits.…”
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Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits
Published 2023“…We demonstrate a relatively large hyperfine interaction of <i>A</i><sub>iso</sub> = 1800 MHz for Pr<sup>4+</sup>, coherent manipulation of the spin with <i>Q</i><sub>M</sub> = 2Ω<sub>R</sub><i>T</i><sub>m</sub>, reaching up to ∼400 for <b>0.1Pr:BSO</b> at <i>T</i> = 5 K, and significant improvement of the temperature at which <i>T</i><sub>m</sub> is limited by <i>T</i><sub>1</sub> (<i>T</i>* = 60 K) compared to other RE ion qubits.…”
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Increased Crystal Field Drives Intermediate Coupling and Minimizes Decoherence in Tetravalent Praseodymium Qubits
Published 2023“…We demonstrate a relatively large hyperfine interaction of <i>A</i><sub>iso</sub> = 1800 MHz for Pr<sup>4+</sup>, coherent manipulation of the spin with <i>Q</i><sub>M</sub> = 2Ω<sub>R</sub><i>T</i><sub>m</sub>, reaching up to ∼400 for <b>0.1Pr:BSO</b> at <i>T</i> = 5 K, and significant improvement of the temperature at which <i>T</i><sub>m</sub> is limited by <i>T</i><sub>1</sub> (<i>T</i>* = 60 K) compared to other RE ion qubits.…”