Showing 18,681 - 18,700 results of 56,682 for search '(( 10 ((mean decrease) OR (nn decrease)) ) OR ( 100 ((ng decrease) OR (a decrease)) ))', query time: 1.08s Refine Results
  1. 18681

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  2. 18682

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  3. 18683

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  4. 18684

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  5. 18685

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  6. 18686

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  7. 18687

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  8. 18688

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  9. 18689

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  10. 18690
  11. 18691
  12. 18692
  13. 18693
  14. 18694
  15. 18695
  16. 18696
  17. 18697
  18. 18698
  19. 18699
  20. 18700