Abstract SABRE (Sodium iodide with Active Background REjection) is a direct detection dark matter experiment based on arrays of radio-pure NaI(Tl) crystals. The experiment aims at achieving an ultra-low background rate and its primary goal is to confirm or refute the results from the DAMA/LIBRA experiment. The SABRE Proof-of-Principle phase was carried out in 2020–2021 at the Gran Sasso National Laboratory (LNGS), in Italy. The next phase consists of two full-scale experiments: SABRE South at the Stawell Underground Physics Laboratory, in Australia, and SABRE North at LNGS. This paper focuses on SABRE South and presents a detailed simulation of the detector, which is used to characterise the background for dark matter searches including DAM...
facility to be built in 2016, located 1 km below the surface in western Victoria, Australia. I will ...
A large effort has been carried out to charac- terize the background of sodium iodide crystals withi...
Abstract We have developed ultra-low-background NaI(Tl) crystals to reproduce the DAMA results with ...
SABRE (Sodium iodide with Active Background REjection) is a direct detection dark matter experiment ...
SABRE (Sodium-iodide with Active Background REjection) is a direct dark matter search experiment bas...
Abstract SABRE aims to directly measure the annual modulation of the dark matter interaction rate wi...
The orbital motion of the Earth around the Sun is expected to produce a modulation in the interactio...
AbstractSABRE (Sodium-iodide with Active Background REjection) is a new NaI(Tl) experiment designed ...
SABRE (Sodium iodide with Active Background REjection) South is a NaI(Tl) based dark matter direct d...
SABRE is a dark matter direct detection experiment based on NaI(Tl) scintillating crystals. The prim...
The SABRE (Sodium iodide with Active Background REjection) experiment aims to detect an annual rate ...
The direct detection of dark matter is a key problem in astroparticle physics that generally require...
Measuring an annual modulation in a direct Dark Matter detection experiment is not only a proof of t...
We present here a characterization of the low background NaI(Tl) crystal NaI-33 based on a period of...
Ultra-pure NaI(Tl) crystals are the key element for a model-independent verification of the long sta...
facility to be built in 2016, located 1 km below the surface in western Victoria, Australia. I will ...
A large effort has been carried out to charac- terize the background of sodium iodide crystals withi...
Abstract We have developed ultra-low-background NaI(Tl) crystals to reproduce the DAMA results with ...
SABRE (Sodium iodide with Active Background REjection) is a direct detection dark matter experiment ...
SABRE (Sodium-iodide with Active Background REjection) is a direct dark matter search experiment bas...
Abstract SABRE aims to directly measure the annual modulation of the dark matter interaction rate wi...
The orbital motion of the Earth around the Sun is expected to produce a modulation in the interactio...
AbstractSABRE (Sodium-iodide with Active Background REjection) is a new NaI(Tl) experiment designed ...
SABRE (Sodium iodide with Active Background REjection) South is a NaI(Tl) based dark matter direct d...
SABRE is a dark matter direct detection experiment based on NaI(Tl) scintillating crystals. The prim...
The SABRE (Sodium iodide with Active Background REjection) experiment aims to detect an annual rate ...
The direct detection of dark matter is a key problem in astroparticle physics that generally require...
Measuring an annual modulation in a direct Dark Matter detection experiment is not only a proof of t...
We present here a characterization of the low background NaI(Tl) crystal NaI-33 based on a period of...
Ultra-pure NaI(Tl) crystals are the key element for a model-independent verification of the long sta...
facility to be built in 2016, located 1 km below the surface in western Victoria, Australia. I will ...
A large effort has been carried out to charac- terize the background of sodium iodide crystals withi...
Abstract We have developed ultra-low-background NaI(Tl) crystals to reproduce the DAMA results with ...