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1. X-ray photodesorption of complex organic molecules in protoplanetary disks -- I. Acetonitrile CH3CN

2. Indirect X-ray photodesorption of 15N2 and 13CO from mixed and layered ices

3. X-ray induced desorption and photochemistry in CO ice

4. Mechanism of Indirect Photon-induced Desorption at the Water Ice Surface

5. Complex organic molecules in protoplanetary disks: X-ray photodesorption from methanol-containing ices. Part II -- Mixed methanol-CO and methanol-H2O ices

6. Complex organic molecules in protoplanetary disks : X-ray photodesorption from methanol-containing ices. Part I -- Pure methanol ices

7. Desorption of neutrals, cations and anions from core-excited amorphous solid water

8. The efficient photodesorption of nitric oxide (NO) ices A laboratory astrophysics study

9. X-ray photo-desorption of NH3 and N2 from ammonia ices: Mechanisms and yields in protoplanetary disks.

10. Experimental evidence of water formation on interstellar dust grains

11. Experimental evidence for water formation on interstellar dust grains by hydrogen and oxygen atoms

12. Oscillator Strengths and Predissociation Rates for Rydberg Transitions in 12C16O, 13C16O, and 13C18O Involving the E 1Pi, B 1Sigma+, and W 1Pi States

13. Indirect x-ray photodesorption of N215 and CO13 from mixed and layered ices.

14. Oscillator strengths for transitions to Rydberg levels in $^{12}C^{16}O$, $^{13}C^{16}O$ and $^{13}C^{18}O$ between 967 and 972 A

16. Rotranslational dynamics of confined water. II. Spectroscopic evidence of confinement effects on the far-infrared spectra of water isotopologues in argon and krypton matrices.

18. Electron-stimulated desorption from molecular ices in the 0.15–2 keV regime.

23. X-Ray induced desorption and photochemistry in CO ice

24. Photodissociation of H (sub)2 O and D (sub)2 O in B, C, and D states (134-119 nm). Comparison between experiment and ab initio calculations

27. Adsorption energies and prefactor determination for CH3OH adsorption on graphite.

28. Nitrile versus isonitrile adsorption at interstellar grain surfaces: II. Carbonaceous aromatic surfaces

30. Interaction of atomic and molecular deuterium with a nonporous amorphous water ice surface between 8 and 30 K.

31. Interaction of D2 with H2O amorphous ice studied by temperature-programed desorption experiments.

32. High resolution photoabsorption and photofragment fluorescence spectroscopy of water between 10.9 and 12 eV.

33. The efficient photodesorption of nitric oxide (NO) ices

35. Observation of the lowest 1Δu Rydberg state of acetylene by multiphoton ionization spectroscopy.

36. High-resolution study of oscillator strengths and predissociation rates for 12 C 16 O

37. Photodesorption of interstellar ice analogues: a wavelength-dependent study -Affiche

38. Photodesorption of Ices

39. Understanding the relationship between gas and ice: experimental investigations on ortho-para ratios and UV photodesorption processes

40. Wavelength-dependent photodesorption of molecular ices -Affiche

41. Nuclear Spin Conversion of Molecular Hydrogen on Amorphous Solid Water in the presence of O2 traces

42. Interaction gaz surface et chimie hétérogène sur des analogues de grains interstellaires

44. Techniques d'optique non linéaire appliquées à l'étude de la conversion ortho-para de la molécule D2 sur une glace d'eau poreuse à 10 K en présence de O2

45. Spectroscopie et conversion de spin nucléaire de petites molécules en matrice de gaz rares - Communication orale

46. Measurement of the adsorption energy difference between ortho- and para-D2 on an amorphous ice surface

47. 'Concentration and temperature dependence of nuclear spin conversion of H2O in rare gas matrices: measurements and theoretical model.' – Affiche

48. 'A first step before solving the 'out of equilibrium ortho to para ratio's problem' found in space: studies of nuclear spin conversion of H2O in rare gas matrices. Astrophysical interest.' – Affiche

49. H, O, and N interaction and reactivity on surfaces in laboratory and space in Molecules in Space & Laboratory

50. 'Absorption oscillator strengths for CO in the 929-935 Å range.' – Affiche

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