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1. Neutrinoless Double Beta Decay Sensitivity of the XLZD Rare Event Observatory

2. The XLZD Design Book: Towards the Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics

3. Dark Matter Search Results from 4.2 Tonne-Years of Exposure of the LUX-ZEPLIN (LZ) Experiment

4. The data acquisition system of the LZ dark matter detector: FADR

5. Two-neutrino double electron capture of $^{124}$Xe in the first LUX-ZEPLIN exposure

6. Transforming a rare event search into a not-so-rare event search in real-time with deep learning-based object detection

7. Probing the Scalar WIMP-Pion Coupling with the first LUX-ZEPLIN data

8. The design, implementation, and performance of the LZ calibration systems

9. New constraints on ultraheavy dark matter from the LZ experiment

10. The Data Acquisition System of the LZ Dark Matter Detector: FADR

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

12. The Design, Implementation, and Performance of the LZ Calibration Systems

13. Constraints On Covariant WIMP-Nucleon Effective Field Theory Interactions from the First Science Run of the LUX-ZEPLIN Experiment

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

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

16. New constraints on ultraheavy dark matter from the LZ experiment

17. First constraints on WIMP-nucleon effective field theory couplings in an extended energy region from LUX-ZEPLIN

18. First Constraints on WIMP-Nucleon Effective Field Theory Couplings in an Extended Energy Region From LUX-ZEPLIN

19. Detector Development for the CRESST Experiment

20. Detector development for the CRESST experiment

21. Ultralong-term high-density data storage with atomic defects in SiC

22. Light Dark Matter Search Using a Diamond Cryogenic Detector

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

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

25. A search for new physics in low-energy electron recoils from the first LZ exposure

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

27. Search for new physics in low-energy electron recoils from the first LZ exposure

28. Optimal Operation of Cryogenic Calorimeters Through Deep Reinforcement Learning

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

30. Background determination for the LUX-ZEPLIN dark matter experiment

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

32. Background Determination for the LUX-ZEPLIN (LZ) Dark Matter Experiment

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

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

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

36. The MIGDAL experiment: Measuring a rare atomic process to aid the search for dark matter

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

38. First Dark Matter Search Results from the LUX-ZEPLIN (LZ) Experiment

39. Light dark matter search using a diamond cryogenic detector

40. Recoil imaging for directional detection of dark matter, neutrinos, and physics beyond the Standard Model

41. A Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics

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

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

44. Cosmogenic production of $^{37}$Ar in the context of the LUX-ZEPLIN experiment

45. Cosmogenic production of Ar37 in the context of the LUX-ZEPLIN experiment

46. Performance of ZnSe-based scintillators at low temperatures

47. Projected sensitivity of the LUX-ZEPLIN (LZ) experiment to the two-neutrino and neutrinoless double beta decays of $^{134}$Xe

48. Projected sensitivity of the LUX-ZEPLIN experiment to the two-neutrino and neutrinoless double β decays of Xe134

49. Projected sensitivities of the LUX-ZEPLIN (LZ) experiment to new physics via low-energy electron recoils

50. Enhancing the sensitivity of the LUX-ZEPLIN (LZ) dark matter experiment to low energy signals

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