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1. First image-guided treatment of a mouse tumor with radioactive ion beams

2. Radiative Decay of the $^{229m}$Th Nuclear Clock Isomer in Different Host Materials

3. Frequency ratio of the $^{229\mathrm{m}}$Th nuclear isomeric transition and the $^{87}$Sr atomic clock

4. Increasing the rate capability for the cryogenic stopping cell of the FRS Ion Catcher

6. Observation of the radiative decay of the ${}^{229}\mathrm{Th}$ nuclear clock isomer

7. Excitation and probing of low-energy nuclear states at high-energy storage rings

8. New Horizons: Scalar and Vector Ultralight Dark Matter

9. Laser Driven Nuclear physics at ELINP

10. 'Phase Transition' in the 'Thorium-Isomer Story'

11. Expanding Nuclear Physics Horizons with the Gamma Factory

12. Charge-state resolved laser acceleration of gold ions to beyond 7 MeV/u

13. Nuclear clocks for testing fundamental physics

14. Nuclear physics midterm plan at LNS

15. The theory of direct laser excitation of nuclear transitions

16. Electronic bridge excitation in highly charged Th-229 ions

17. Energy of the $^{229}$Th nuclear clock transition

18. The concept of laser-based conversion electron M\'ossbauer spectroscopy for a precise energy determination of $^{229m}$Th

19. Photo-response of the N=Z24 nucleus N=Z24Mg

20. Towards a precise determination of the excitation energy of the Thorium nuclear isomer using a magnetic bottle spectrometer

21. En-route to the fission-fusion reaction mechanism: a status update on laser-driven heavy ion acceleration

22. A novel approach to electron data background treatment in an online wide-angle spectrometer for laser-accelerated ion and electron bunches

23. Towards a 229Th-based nuclear clock

24. Dispersive refraction of different light-to-heavy materials at MeV $\gamma$-ray energies

25. En-route to the fission–fusion reaction mechanism: a status update on laser-driven heavy ion acceleration

26. Lifetime measurement of the $^{229}$Th nuclear isomer

27. Direct detection of the 229Th nuclear clock transition

28. The extraction of 229Th3+ from a buffer-gas stopping cell

29. A laser excitation scheme for $^{229\text{m}}$Th

30. Laser spectroscopic characterization of the nuclear clock isomer $^{229m}$Th

31. Ultra high precision refractive index measurement of Si at $\gamma$-ray energies up to 2 MeV

32. Feasibility Study of Internal Conversion Electron Spectroscopy of $^{229m}$Th

34. Determination of the extraction efficiency for $^{233}$U source $\alpha$-recoil ions from the MLL buffer-gas stopping cell

35. Isolated proton bunch acceleration by a petawatt laser pulse.

36. Spectroscopy of 232U in the (p,t) reaction: More information on 0+ states

37. A VUV detection system for the direct photonic identification of the first excited isomeric state of $^{229}$Th

38. Direct mapping of nuclear shell effects in the heaviest elements

40. 0+ states and collective bands in 228Th studied by the (p,t) reaction

41. Sub-millimeter nuclear medical imaging with high sensitivity in positron emission tomography using beta-gamma coincidences

42. Exploring the multi-humped fission barrier of 238U via sub-barrier photofission

43. Towards a direct transition energy measurement of the lowest nuclear excitation in 229Th

44. A Quantal, Partially Ordered Electron Structure as a Basis for a \gamma Free Electron Laser (\gamma-FEL)

45. Transmission resonance spectroscopy in the third minimum of 232Pa

46. Medical Application Studies at ELI-NP

47. Submillimeter nuclear medical imaging with a Compton Camera using triple coincidences of collinear \beta+ annihilation photons and \gamma-rays

48. Seeded quantum FEL at 478 keV

49. Nuclear photonics at ultra-high counting rates and higher multipole excitations

50. Nuclear Photonics

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