Numerous evidence suggests that the majority of matter in the Universe is made of a rarely interacting, non-luminous component, termed dark matter. The XENON1T experiment, utilizing a two-phase liquid xenon time projection chamber, was primarily designed to search for Weakly Interacting Massive Particles (WIMPs), one of the most promising dark matter candidates. With one tonne-year exposure, XENON1T placed the most stringent upper limits of WIMP interaction strength for a large range of WIMP masses and a variety of interaction types. The unprecedented low background in XENON1T also enabled competitive searches for electronic recoil signals. An excess was observed above the known background at low energies and is most prominent between 2 and...
We report the first dark matter search results from XENON1T, a similar to 2000-kg-target-mass dual-p...
We report results from searches for new physics with low-energy electronic recoil data recorded with...
International audienceWe report on the first search for nuclear recoils from dark matter in the form...
Numerous evidence suggests that the majority of matter in the Universe is made of a rarely interacti...
Astronomical and cosmological observations indicate that a large amount of the energy content of the...
Abstract The worldwide race towards direct dark matter detection in the form of Weakly Interacting M...
We report on a search for weakly interacting massive particles (WIMPs) using 278.8 days of data coll...
XENON1T is a ton-scale liquid xenon time projection chamber primarily designed to search for dark ma...
We are missing 85% of the matter in our Universe. This simple statement motivates thousands of physi...
A great number of astrophysical observations suggests that of the matter in our universe, only a six...
Weakly Interacting Massive Particles (WIMPs) are an excellent candidate for the mysterious Dark Matt...
The XENON1T experiment is the first ton-scale dual-phase (liquidgas) xenon time projection chamber, ...
We report the first dark matter search results from XENON1T, a similar to 2000-kg-target-mass dual-p...
We report results from searches for new physics with low-energy electronic recoil data recorded with...
International audienceWe report on the first search for nuclear recoils from dark matter in the form...
Numerous evidence suggests that the majority of matter in the Universe is made of a rarely interacti...
Astronomical and cosmological observations indicate that a large amount of the energy content of the...
Abstract The worldwide race towards direct dark matter detection in the form of Weakly Interacting M...
We report on a search for weakly interacting massive particles (WIMPs) using 278.8 days of data coll...
XENON1T is a ton-scale liquid xenon time projection chamber primarily designed to search for dark ma...
We are missing 85% of the matter in our Universe. This simple statement motivates thousands of physi...
A great number of astrophysical observations suggests that of the matter in our universe, only a six...
Weakly Interacting Massive Particles (WIMPs) are an excellent candidate for the mysterious Dark Matt...
The XENON1T experiment is the first ton-scale dual-phase (liquidgas) xenon time projection chamber, ...
We report the first dark matter search results from XENON1T, a similar to 2000-kg-target-mass dual-p...
We report results from searches for new physics with low-energy electronic recoil data recorded with...
International audienceWe report on the first search for nuclear recoils from dark matter in the form...