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1. Neutrino flux sensitivity to the next galactic core-collapse supernova in COSINUS

2. First observation of single photons in a CRESST detector and new dark matter exclusion limits

3. Water Cherenkov muon veto for the COSINUS experiment: design and simulation optimization

4. DoubleTES detectors to investigate the CRESST low energy background: results from above-ground prototypes

5. A likelihood framework for cryogenic scintillating calorimeters used in the CRESST dark matter search

6. COSINUS:TES-instrumented NaI Crystals for Direct Dark Matter Search

7. A Vibration Decoupling System for TES Operation in the COSINUS Dry Dilution Refrigerator

8. Description and Performance of the COSINUS remoTES Design

9. Primary Immunodeficiencies in Russia: Data From the National Registry

10. Dark Matter-Electron Scattering Search Using Cryogenic Light Detectors

11. Detector Development for the CRESST Experiment

12. Detector development for the CRESST experiment

13. Light Dark Matter Search Using a Diamond Cryogenic Detector

14. Constraints on self-interaction cross-sections of dark matter in universal bound states from direct detection

15. A likelihood framework for cryogenic scintillating calorimeters used in the CRESST dark matter search

16. Deep-underground dark matter search with a COSINUS detector prototype

17. Particle discrimination in a NaI crystal using the COSINUS remote TES design

18. High-Dimensional Bayesian Likelihood Normalisation for CRESST's Background Model

19. Optimal Operation of Cryogenic Calorimeters Through Deep Reinforcement Learning

20. Observation of a low energy nuclear recoil peak in the neutron calibration data of the CRESST-III Experiment

21. Results on sub-GeV Dark Matter from a 10 eV Threshold CRESST-III Silicon Detector

22. Towards an automated data cleaning with deep learning in CRESST

23. Secular Equilibrium Assessment in a $\mathrm{CaWO}_4$ Target Crystal from the Dark Matter Experiment CRESST using Bayesian Likelihood Normalisation

24. Latest observations on the low energy excess in CRESST-III

25. Testing spin-dependent dark matter interactions with lithium aluminate targets in CRESST-III

26. Light dark matter search using a diamond cryogenic detector

27. EXCESS workshop: Descriptions of rising low-energy spectra

28. Probing spin-dependent dark matter interactions with $^6$Li

29. First measurements of remoTES cryogenic calorimeters: easy-to-fabricate particle detectors for a wide choice of target materials

30. Simulation-based design study for the passive shielding of the COSINUS dark matter experiment

31. Cryogenic characterization of a LiAlO$_{2}$ crystal and new results on spin-dependent dark matter interactions with ordinary matter

32. Improving the Quality of CaWO4 Target Crystals for CRESST

33. Geant4-based electromagnetic background model for the CRESST dark matter experiment

34. Description of CRESST-III Data

35. First results from the CRESST-III low-mass dark matter program

36. First results on sub-GeV spin-dependent dark matter interactions with $^{7}$Li

37. Secular equilibrium assessment in a CaWO4 target crystal from the dark matter experiment CRESST using Bayesian likelihood normalisation

38. Optimal Operation of Cryogenic Calorimeters Through Deep Reinforcement Learning

39. Light dark matter search using a diamond cryogenic detector

40. First measurements of remoTES cryogenic calorimeters: Easy-to-fabricate particle detectors for a wide choice of target materials

41. Limits on Dark Matter Effective Field Theory Parameters with CRESST-II

42. Towards an automated data cleaning with deep learning in CRESST

44. Simulation-based design study for the passive shielding of the COSINUS dark matter experiment

45. Geant4 simulations of the influence of contamination and roughness of the detector surface on background spectra in CRESST

47. Results on sub-GeV dark matter from a 10 eV threshold CRESST-III silicon detector

48. Towards an automated data cleaning with deep learning in CRESST

49. Erratum to: Geant4-based electromagnetic background model for the CRESST dark matter experiment

50. Improving the Quality of CaWO4 Target Crystals for CRESST

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