Photomultiplier tubes (PMTs) are often used in low-background particle physics experiments, which rely on an excellent response to single-photon signals and stable long-term operation. In particular, the Hamamatsu R11410 model is the light sensor of choice for liquid xenon dark matter experiments, including XENONnT. The same PMT model was also used for the predecessor, XENON1T, where issues affecting its long-term operation were observed. Here, we report on an improved PMT testing procedure which ensures optimal performance in XENONnT. Using both new and upgraded facilities, we tested 368 new PMTs in a cryogenic xenon environment. We developed new tests targeted at the detection of light emission and the degradation of the PMT vacuum throug...
The experiment XENON1T aims at directly detecting dark matter via interactions of weakly interacting...
The XENON Dark Matter Search project aims for the direct detection of dark matter. Using a total mas...
One of the most exciting mysteries of modern physics is that of dark matter. While there is a multit...
Photomultiplier tubes (PMTs) are often used in low-background particle physics experiments, which re...
The Hamamatsu R11410-21 photomultiplier tube is the photodetector of choice for the XENON1T dual-pha...
The Hamamatsu R11410-21 photomultiplier tube is the photodetector of choice for the XENON1T dual-pha...
Photomultipliers (PMTs) play a critical role in detecting liquid xenon scintillation light for the p...
The low-background, VUV-sensitive 3-inch diameter photomultiplier tube R11410 has been developed by ...
Results are presented from radioactivity screening of two models of photomultiplier tubes designed f...
The Hamamatsu R11410 photomultiplier, a tube of 3" diameter and with a very low intrinsic radioactiv...
We present the precision calibration of 35 Hamamatsu R11410-22 photomultiplier tubes (PMTs) with xen...
To satisfy the requirements of the next generation of dark matter detectors based on the dual phase ...
XMASS-I is a single-phase liquid xenon detector whose purpose is direct detection of dark matter. To...
Results are presented from radioactivity screening of two models of photomultiplier tubes designed f...
To satisfy the requirements of the next generation of dark matter detectors based on the dual phase ...
The experiment XENON1T aims at directly detecting dark matter via interactions of weakly interacting...
The XENON Dark Matter Search project aims for the direct detection of dark matter. Using a total mas...
One of the most exciting mysteries of modern physics is that of dark matter. While there is a multit...
Photomultiplier tubes (PMTs) are often used in low-background particle physics experiments, which re...
The Hamamatsu R11410-21 photomultiplier tube is the photodetector of choice for the XENON1T dual-pha...
The Hamamatsu R11410-21 photomultiplier tube is the photodetector of choice for the XENON1T dual-pha...
Photomultipliers (PMTs) play a critical role in detecting liquid xenon scintillation light for the p...
The low-background, VUV-sensitive 3-inch diameter photomultiplier tube R11410 has been developed by ...
Results are presented from radioactivity screening of two models of photomultiplier tubes designed f...
The Hamamatsu R11410 photomultiplier, a tube of 3" diameter and with a very low intrinsic radioactiv...
We present the precision calibration of 35 Hamamatsu R11410-22 photomultiplier tubes (PMTs) with xen...
To satisfy the requirements of the next generation of dark matter detectors based on the dual phase ...
XMASS-I is a single-phase liquid xenon detector whose purpose is direct detection of dark matter. To...
Results are presented from radioactivity screening of two models of photomultiplier tubes designed f...
To satisfy the requirements of the next generation of dark matter detectors based on the dual phase ...
The experiment XENON1T aims at directly detecting dark matter via interactions of weakly interacting...
The XENON Dark Matter Search project aims for the direct detection of dark matter. Using a total mas...
One of the most exciting mysteries of modern physics is that of dark matter. While there is a multit...