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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

18. Improved Dark Matter Search Sensitivity Resulting from LUX Low-Energy Nuclear Recoil Calibration

19. Studies in Pulse Shape Discrimination for an Optimized ASIC Design

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

21. Studies in pulse shape discrimination for an optimized ASIC design

22. A next-generation liquid xenon observatory for dark matter and neutrino physics

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

24. Improved Dark Matter Search Sensitivity Resulting from LUX Low-Energy Nuclear Recoil Calibration

25. Fast and flexible analysis of direct dark matter search data with machine learning

26. Fast and Flexible Analysis of Direct Dark Matter Search Data with Machine Learning

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

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

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

30. Erratum to: The LUX-ZEPLIN (LZ) radioactivity and cleanliness control programs

31. Fast and Flexible Analysis of Direct Dark Matter Search Data with Machine Learning

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

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

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

35. Constraints on Effective Field Theory Couplings Using 311.2 days of LUX Data

36. Optical Calibration System for the LUX-ZEPLIN (LZ) Outer Detector

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

38. Projected sensitivities of the LUX-ZEPLIN experiment to new physics via low-energy electron recoils

39. Constraints on effective field theory couplings using 311.2 days of LUX data

40. Improving sensitivity to low-mass dark matter in LUX using a novel electrode background mitigation technique

41. The LUX-ZEPLIN (LZ) radioactivity and cleanliness control programs

42. Investigation of background electron emission in the LUX detector

43. Discrimination of electronic recoils from nuclear recoils in two-phase xenon time projection chambers

44. An Effective Field Theory Analysis of the First LUX Dark Matter Search

45. Simulations of Events for the LUX-ZEPLIN (LZ) Dark Matter Experiment

46. Improving sensitivity to low-mass dark matter in LUX using a novel electrode background mitigation technique

47. Effective field theory analysis of the first LUX dark matter search

48. Projected sensitivity of the LUX-ZEPLIN experiment to the $0\nu\beta\beta$ decay of $^{136}$Xe

49. Search for two neutrino double electron capture of $^{124}$Xe and $^{126}$Xe in the full exposure of the LUX detector

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

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