In this paper we report on the growing of a large xenon crystal that can be used as low energy threshold particle detector for applications in dark matter searches. A large xenon crystal of ~150 cm3 volume has been grown exploiting the Bridgman-Stockbarger modified technique in a pyrex chamber. The crystal has been used as a proof of concept of the proposed detection scheme as a sensor for cosmic rays
Theoretical models suggest that a large part of our universe is made up of dark matter - this has no...
The XENON Dark Matter Search project aims for the direct detection of dark matter. Using a total mas...
ABSTRACT: We report a demonstration of the scalability of optically transparent xenon in the solid p...
In this paper we report on the growing of a large xenon crystal that can be used as low energy thres...
One of the most promising detector technologies to directly detect weakly interacting massive partic...
Low energy threshold detectors are necessary in many frontier fields of the experimental physics. In...
Dark matter direct detection experiments based on liquid xenon detectors are one of the most promisi...
The XENON project at INFN Laboratori Nazionali del Gran Sasso, Italy, aims at dark matter direct det...
Low energy threshold detectors are necessary in many frontier fields of the experimental physics. In...
We present systematic case studies to investigate the sensitivity of axion searches by liquid xenon ...
The energy threshold of liquid xenon detectors is driven by the requirements of observing a scintill...
The XENON100 experiment aims at detecting cold dark matter particles via their collisions with xenon...
High pressure xenon gas detectors have the potential to significantly contribute to searches for rar...
The Large Underground Xenon (LUX) collaboration has designed and constructed a dual-phase xenon dete...
The nature of dark matter is one of the most compelling mysteries of modern physics. Liquid xenon de...
Theoretical models suggest that a large part of our universe is made up of dark matter - this has no...
The XENON Dark Matter Search project aims for the direct detection of dark matter. Using a total mas...
ABSTRACT: We report a demonstration of the scalability of optically transparent xenon in the solid p...
In this paper we report on the growing of a large xenon crystal that can be used as low energy thres...
One of the most promising detector technologies to directly detect weakly interacting massive partic...
Low energy threshold detectors are necessary in many frontier fields of the experimental physics. In...
Dark matter direct detection experiments based on liquid xenon detectors are one of the most promisi...
The XENON project at INFN Laboratori Nazionali del Gran Sasso, Italy, aims at dark matter direct det...
Low energy threshold detectors are necessary in many frontier fields of the experimental physics. In...
We present systematic case studies to investigate the sensitivity of axion searches by liquid xenon ...
The energy threshold of liquid xenon detectors is driven by the requirements of observing a scintill...
The XENON100 experiment aims at detecting cold dark matter particles via their collisions with xenon...
High pressure xenon gas detectors have the potential to significantly contribute to searches for rar...
The Large Underground Xenon (LUX) collaboration has designed and constructed a dual-phase xenon dete...
The nature of dark matter is one of the most compelling mysteries of modern physics. Liquid xenon de...
Theoretical models suggest that a large part of our universe is made up of dark matter - this has no...
The XENON Dark Matter Search project aims for the direct detection of dark matter. Using a total mas...
ABSTRACT: We report a demonstration of the scalability of optically transparent xenon in the solid p...