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1. Measurement and analysis of the $^{246}$Cm and $^{248}$Cm neutron capture cross-sections at the EAR2 of the n TOF facility

2. Measurement of the $^{14}$N(n,p)$^{14}$C cross section at the CERN n_TOF facility from sub-thermal energy to 800 keV

3. Measurement of the prompt fission γ235-rays from slow neutron-induced fission of γ235U with STEFF

4. High accuracy, high resolution 235U(n,f) cross section from n_TOF (CERN) in the thermal to 10 keV energy range

5. Imaging neutron capture cross sections: i-TED proof-of-concept and future prospects based on Machine-Learning techniques

6. Measurement of the 235U(n,f) cross section relative to the 6Li(n,t) and 10B(n,alpha) standards from thermal to 170 keV neutron energy range at n_TOF

7. The $^{7}$Be($\boldsymbol{n,p}$)$^{7}$Li reaction and the Cosmological Lithium Problem: measurement of the cross section in a wide energy range at n_TOF (CERN)

8. Cross section measurements of $^{155,157}$Gd(n,$\gamma$) induced by thermal and epithermal neutrons

9. Fission Fragment Angular Anisotropy in Neutron-Induced Fission of $^{235}$U Measured with a Time Projection Chamber

10. 74n,γGe(74n,γ) cross section below 70 keV measured at n_TOF CERN

11. Experimental setup and procedure for the measurement of the 7Be(n,p)7Li reaction at n_TOF

12. Neutron capture cross section measurement of 238U at the n TOF CERN facility with C6D6 scintillation detectors in the energy region from 1 eV to 700 keV

13. High accuracy, high resolution 235U(n,f) cross section from n_TOF (CERN) from 18 meV to 10 keV

14. Integral measurement of the $^{12}$C(n,p)$^{12}$B reaction up to 10 GeV

15. Experimental setup and procedure for the measurement of the 7Be(n,{\alpha}){\alpha} reaction at n_TOF

16. Measurement and analysis of the Am-243 neutron capture cross section at the n_TOF facility at CERN

17. High accuracy determination of the $^{238}$U/$^{235}$U fission cross section ratio up to $\sim$1 GeV at n_TOF (CERN)

18. Measurement of the 241Am(n,γ) cross section at the n_TOF facility at CERN

19. The Stellar 72Ge(n, γ) Cross Section for weak s-process: A First Measurement at n_TOF

20. High resolution 80Se(n,γ) cross section measurement at CERN n_TOF

21. TOF Facility at CERN

22. A compact fission detector for fission-tagging neutron capture experiments with radioactive fissile isotopes

23. Measurement of the $^{12}$C($n,p$)$^{12}$B cross section at n_TOF (CERN) by in-beam activation analysis

24. GEANT4 simulation of the neutron background of the C$_6$D$_6$ set-up for capture studies at n_TOF

25. $^{62}$Ni($n,\gamma$) and $^{63}$Ni($n,\gamma$) cross sections measured at n_TOF/CERN

26. Experimental neutron capture data of $^{58}$Ni from the CERN n_TOF facility

27. Neutron capture cross section of unstable 63Ni: implications for stellar nucleosynthesis

28. Ramsey's Method of Separated Oscillating Fields and its Application to Gravitationally Induced Quantum Phaseshifts

29. Imaging neutron capture cross sections: i-TED proof-of-concept and future prospects based on Machine-Learning techniques

31. Experimental setup and procedure for the measurement of the 7Be(n,p)7Li reaction at n_TOF

32. Relevance of pseudospin symmetry in proton-nucleus scattering

33. First 80Se(n,γ) cross section measurement with high resolution in the full stellar energy range 1 eV - 100 keV and its astrophysical implications for the s-process

34. Multi-Channel Inverse Scattering Problem on the Line: Thresholds and Bound States

35. Neutron Charge Radius Deduced from Interferometric Bragg Reflection Technique

36. Supersymmetric Transformations in Coupled-Channel Systems

37. Complete determination of the reflection coefficient in neutron specular reflection by absorptive non-magnetic media

38. Violation of pseudospin symmetry in nucleon-nucleus scattering: exact relations

39. Corrigendum: “Measurement of 73Ge(n,γ) cross sections and implications for stellar nucleosynthesis” [Phys. Lett. B 790 (2019) 458–465]

40. Nuclear Data for the Thorium Fuel Cycle and the Transmutation of Nuclear Waste

41. Corrigendum: 'Measurement of Ge( , ) cross sections and implications for stellar nucleosynthesis' [Phys. Lett. B 790 (2019) 458–465]

42. Determination of two-body potentials from n-body spectra

43. Characterization of a detector setup for the measurement of the 235U(n,f) cross section relative to n-p scattering up to 500 MeV at the n_TOF facility at CERN

44. Detector set up for the measurements of the neutron-induced fission cross section of 235U relative to n-p scattering up to 150 MeV at CERN-n_TOF

45. Neutron-induced fission cross sections of Th232 and U233 up to 1 GeV using parallel plate avalanche counters at the CERN n_TOF facility

46. Neutron-induced fission cross sections of Th 232 and U 233 up to 1 GeV using parallel plate avalanche counters at the CERN n_TOF facility

47. Neutron-induced fission cross sections of <math><mmultiscripts><mi>Th</mi><mprescripts/><none/><mn>232</mn></mmultiscripts></math> and <math><mmultiscripts><mi mathvariant='normal'>U</mi><mprescripts/><none/><mn>233</mn></mmultiscripts></math> up to 1 GeV using parallel plate avalanche counters at the CERN n_TOF facility

48. Measurement of the <math><mrow><mmultiscripts><mi>Se</mi><mprescripts/><none/><mn>77</mn></mmultiscripts><mo>(</mo><mi>n</mi><mo>,</mo><mi>γ</mi><mo>)</mo></mrow></math> cross section up to 200 keV at the n_TOF facility at CERN

49. Corrigendum: 'Measurement of ⁷³Ge(n,γ) cross sections and implications for stellar nucleosynthesis' [Phys. Lett. B 790 (2019) 458–465]

50. The new vertical neutron beam line at the CERN n_TOF facility design and outlook on the performance

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