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6. Radiation effects on ytterbium- and ytterbium/erbium-doped double-clad optical fibers

8. A new technique for SET pulse width measurement in chains of inverters using pulsed laser irradiation

9. Radiation effects on silica-based preforms and optical fibers-II: coupling ab initio simulations and experiments

10. Direct evidence of secondary recoiled nuclei from high energy protons

11. Proton- and gamma-induced effects on erbium-doped optical fibers

12. New insights into single event transient propagation in chains of inverters--evidence for propagation-induced pulse broadening

13. Impact of heavy ion energy and nuclear interactions on single-event upset and latchup in integrated circuits

14. Single event upsets induced by 1-10 MeV neutrons in static-RAMs using mono-energetic neutron sources

15. Spectroscopic study of [gamma]-ray and pulsed X-ray radiation-induced point defects in pure-silica-core optical fibers

16. 3D quantum numerical simulation of single-event transients in multiple-gate nanowire MOSFETs

17. Heavy ion energy effects in CMOS SRAMs

18. 14-MeV neutron, [gamma]-Ray, and pulsed X-ray radiation-induced effects on multimode silica-based optical fibers

19. Investigation of quantum effects in ultra-thin body single- and double-gate devices submitted to heavy ion irradiation

20. Statistical analysis of the charge collected in SOI and bulk devices under heavy 1on and proton irradiation--implications for digital SETs

21. Analysis of 45-nm multi-gate transistors behavior under heavy ion irradiation by 3-D device simulation

22. Effects of angle of incidence on proton and neutron-induced single-event latchup

23. Investigation of 30 nm Gate-All-Around MOSFET sensitivity to heavy ions: a 3-D simulation study

24. Analysis of quasi-monoenergetic neutron and proton SEU cross sections for terrestrial applications

25. Effects of total dose irradiation on single-event upset hardness

26. Comparative study of pulsed x-ray and [gamma]-ray radiation-induced effects in pure-silica-core optical fibers

27. Radiation-induced effects in a new class of optical waveguides: the air-guiding photonic crystal fibers

28. Effects of particle energy on proton-induced single-event latchup

29. Neutron-induced SEU in SRAMs: simulations with n-Si and n-O interactions

30. Neutron and proton-induced single event upsets in advanced commercial fully depleted SOI SRAMs

31. Simulation analysis of the bipolar amplification induced by heavy-ion irradiation in double-gate MOSFETs

32. Vulnerability analysis of optical fibers for Laser Megajoule facility: preliminary studies

33. Issues for single-event proton testing of SRAMs

34. Neutron-induced SEU in bulk SRAMs in terrestrial environment: simulations and experiments

35. Analysis of proton/neutron SEU sensitivity of commercial SRAMs--application to the terrestrial environment test method

36. Charge enhancement effect in NMOS bulk transistors induced by heavy ion irradiation--comparison with SOI

37. Charge collection by capacitive influence through isolation oxides

38. Heavy Ion Microbeam- and Broadbeam-Induced Current Transients in SiGe HBTs

39. High-Speed Single-Event Current Transient Measurements in SiGe HBTs

40. Modeling of High-Energy Particles and Radiation Production for Multipetawatt Laser Facilities.

41. Radiation Effects on Yb- and Yb/Er-Doped Double-Clad Optical Fibers

42. Transient radiation response of single- and multiple-gate FDSOI transistors to pulsed laser and heavy ion irradiation

43. Radiation effects of 14 MeV neutrons on germanosilicate and phosphorus-doped multimode optical fibers

44. Neutron, Gamma-Ray and Pulsed X-Ray Radiation-Induced Effects on Multimode Silica-Based Optical Fibers

45. Investigation of 30nm Gate-All-Around MOSFET Sensitivity to Heavy Ions: a 3-D Simulation Study

46. Neutron induced SEU in bulk SRAMs in terrestrial environment : simulations and experiments

48. Validation of modelled imaging plates sensitivity to 1-100 keV x-rays and spatial resolution characterisation for diagnostics for the "PETawatt Aquitaine Laser".

49. Integration of optical fibers in radiative environments: Advantages and limitations.

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