Characterization of underground laboratories in terms of their natural radioactivity is necessary to determine the conditions that prevail there and plan using these sites for scientific research and other activities. The article compares natural background radiation in three underground laboratories located in the Baltic Sea region. The comparison includes measurements made in underground laboratories (in-situ) and detailed laboratory analyses of water and rock samples taken from these locations. Measurements were made by gamma, alpha spectroscopy, and LSC technique
In situ gamma-ray measurements were taken at eight locations in the Gran Sasso National Laboratory ...
To determine background radiation levels that might influence experiments, we measured in situ gamm...
Underground gamma-ray spectrometry is a fundamental tool for measurement of environmental radioactiv...
Underground laboratories (ULs) offer more and more opportunities for their usage. Still, one of the...
Underground locations can be used in various ways for scientific and economic purposes. One of the m...
Due to their low radioactivity background, underground physics laboratories offer a unique possibili...
Natural radioactivity in underground locations is the main parameter for the safety of work (occupat...
Abstract In operating mines, as well as in deep locations for planned scientific activities, it is ...
There has been growing interest in using underground locations for applications in various fields, i...
Baltic Sea Underground Innovation Network (BSUIN) is an European Union funded project that extends ...
In this work I introduce Callio Lab, an underground centre for science and R & D in the Pyhäsalmi Mi...
The Author(s) 2013. This article is published with open access at Springerlink.com Abstract To deter...
Abstract A low background counting facility with gamma spectroscopy is working in the underground ...
In situ gamma-ray measurements were taken at six locations in the Modane Underground Laboratory. C...
The environment around us is radioactive due to background radiation emitted from the sky, earth's c...
In situ gamma-ray measurements were taken at eight locations in the Gran Sasso National Laboratory ...
To determine background radiation levels that might influence experiments, we measured in situ gamm...
Underground gamma-ray spectrometry is a fundamental tool for measurement of environmental radioactiv...
Underground laboratories (ULs) offer more and more opportunities for their usage. Still, one of the...
Underground locations can be used in various ways for scientific and economic purposes. One of the m...
Due to their low radioactivity background, underground physics laboratories offer a unique possibili...
Natural radioactivity in underground locations is the main parameter for the safety of work (occupat...
Abstract In operating mines, as well as in deep locations for planned scientific activities, it is ...
There has been growing interest in using underground locations for applications in various fields, i...
Baltic Sea Underground Innovation Network (BSUIN) is an European Union funded project that extends ...
In this work I introduce Callio Lab, an underground centre for science and R & D in the Pyhäsalmi Mi...
The Author(s) 2013. This article is published with open access at Springerlink.com Abstract To deter...
Abstract A low background counting facility with gamma spectroscopy is working in the underground ...
In situ gamma-ray measurements were taken at six locations in the Modane Underground Laboratory. C...
The environment around us is radioactive due to background radiation emitted from the sky, earth's c...
In situ gamma-ray measurements were taken at eight locations in the Gran Sasso National Laboratory ...
To determine background radiation levels that might influence experiments, we measured in situ gamm...
Underground gamma-ray spectrometry is a fundamental tool for measurement of environmental radioactiv...