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121 results on '"Grigat J"'

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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. Model-independent searches of new physics in DARWIN with a semi-supervised deep learning pipeline

4. First Search for Light Dark Matter in the Neutrino Fog with XENONnT

5. XENONnT Analysis: Signal Reconstruction, Calibration and Event Selection

6. First Measurement of Solar $^8$B Neutrinos via Coherent Elastic Neutrino-Nucleus Scattering with XENONnT

7. XENONnT WIMP Search: Signal & Background Modeling and Statistical Inference

8. Offline tagging of radon-induced backgrounds in XENON1T and applicability to other liquid xenon detectors

9. The XENONnT Dark Matter Experiment

10. Design and performance of the field cage for the XENONnT experiment

11. The XENONnT dark matter experiment.

12. Cosmogenic background simulations for the DARWIN observatory at different underground locations

13. Search for events in XENON1T associated with Gravitational Waves

14. Searching for Heavy Dark Matter near the Planck Mass with XENON1T

15. Detector signal characterization with a Bayesian network in XENONnT

16. First Dark Matter Search with Nuclear Recoils from the XENONnT Experiment

17. The Triggerless Data Acquisition System of the XENONnT Experiment

18. Low-energy Calibration of XENON1T with an Internal $^{37}$Ar Source

19. Effective Field Theory and Inelastic Dark Matter Results from XENON1T

20. An approximate likelihood for nuclear recoil searches with XENON1T data

21. Search for New Physics in Electronic Recoil Data from XENONnT

22. Double-Weak Decays of $^{124}$Xe and $^{136}$Xe in the XENON1T and XENONnT Experiments

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

24. Application and modeling of an online distillation method to reduce krypton and argon in XENON1T

25. Emission of Single and Few Electrons in XENON1T and Limits on Light Dark Matter

26. Material radiopurity control in the XENONnT experiment

27. Cosmogenic background simulations for neutrinoless double beta decay with the DARWIN observatory at various underground sites

28. Low-energy calibration of XENON1T with an internal 37Ar source

29. Material radiopurity control in the XENONnT experiment

30. The triggerless data acquisition system of the XENONnT experiment

31. Low-energy calibration of XENON1T with an internal $$^{{\textbf {37}}}$$ <math> <msup> <mrow></mrow> <mn>37</mn> </msup> </math> Ar source

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

33. Search for New Physics in Electronic Recoil Data from XENONnT

34. Emission of single and few electrons in XENON1T and limits on light dark matter

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

36. Searching for Heavy Dark Matter near the Planck Mass with XENON1T

37. Low-energy calibration of XENON1T with an internal $^{{\textbf {37}}}$Ar source

38. Application and modeling of an online distillation method to reduce krypton and argon in XENON1T

39. Material radiopurity control in the XENONnT experiment

40. Double-weak decays of <math><mmultiscripts><mi>Xe</mi><mprescripts></mprescripts><none></none><mn>124</mn></mmultiscripts></math> and <math><mmultiscripts><mi>Xe</mi><mprescripts></mprescripts><none></none><mn>136</mn></mmultiscripts></math> in the XENON1T and XENONnT experiments

41. Emission of single and few electrons in XENON1T and limits on light dark matter

42. Application and modeling of an online distillation method to reduce krypton and argon in XENON1T

44. Double-weak decays of Xe 124 and Xe 136 in the XENON1T and XENONnT experiments

45. An approximate likelihood for nuclear recoil searches with XENON1T data

46. Emission of single and few electrons in XENON1T and limits on light dark matter

47. Double-Weak Decays of 124 124 Xe and 136 136 Xe in the XENON1T and XENONnT Experiments

48. Double-weak decays of $^{124}$Xe and $^{136}$Xe in the XENON1T and XENONnT experiments

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