The XENON1T experiment aims for the direct detection of dark matter in a detector filled with 3.3 tons of liquid xenon. In order to achieve the desired sensitivity, the background induced by radioactive decays inside the detector has to be sufficiently low. One major contributor is the β-emitter 85Kr which is present in the xenon. For XENON1T a concentration of natural krypton in xenon natKr/Xe<200ppq (parts per quadrillion, 1ppq=10-15mol/mol) is required. In this work, the design, construction and test of a novel cryogenic distillation column using the common McCabe–Thiele approach is described. The system demonstrated a krypton reduction factor of 6.4 · 10 5 with thermodynamic stability at process speeds above 3 kg/h. The resulting concen...
To meet the requirements of the low background and high sensitivity of the large-scale dark-matter d...
The evidence supporting the presence of Dark Matter in the universe ranges over many length scales: ...
We have developed a new method to measure krypton traces in xenon at unprecedented low concentration...
The XENON1T experiment aims for the direct detection of dark matter in a detector filled with 3.3 to...
International audienceA novel online distillation technique was developed for the XENON1T dark matte...
The Xenon1T experiment aims for the detection of dark matter with liquid xenon as target material fo...
A novel online distillation technique was developed for the XENON1T dark matter experiment to reduce...
The currently running Xenon100 experiment and its successor, Xenon1T, use liquid xenon as target and...
We have developed a new method to measure krypton traces in xenon at so far unprecedented low concen...
The beta-decaying isotope Kr-85 is one of the main intrinsic background components in liquid xenon d...
Based on the McCabe-Thiele (M-T) method and the conservation of mass and energy, the PandaX-4T colla...
The Large Underground Xenon (LUX) experiment operates at the Sanford Underground Research Facility t...
To meet the requirements of the low background and high sensitivity of the large-scale dark-matter d...
The evidence supporting the presence of Dark Matter in the universe ranges over many length scales: ...
We have developed a new method to measure krypton traces in xenon at unprecedented low concentration...
The XENON1T experiment aims for the direct detection of dark matter in a detector filled with 3.3 to...
International audienceA novel online distillation technique was developed for the XENON1T dark matte...
The Xenon1T experiment aims for the detection of dark matter with liquid xenon as target material fo...
A novel online distillation technique was developed for the XENON1T dark matter experiment to reduce...
The currently running Xenon100 experiment and its successor, Xenon1T, use liquid xenon as target and...
We have developed a new method to measure krypton traces in xenon at so far unprecedented low concen...
The beta-decaying isotope Kr-85 is one of the main intrinsic background components in liquid xenon d...
Based on the McCabe-Thiele (M-T) method and the conservation of mass and energy, the PandaX-4T colla...
The Large Underground Xenon (LUX) experiment operates at the Sanford Underground Research Facility t...
To meet the requirements of the low background and high sensitivity of the large-scale dark-matter d...
The evidence supporting the presence of Dark Matter in the universe ranges over many length scales: ...
We have developed a new method to measure krypton traces in xenon at unprecedented low concentration...