The Europe scintillator market is currently witnessing moderate growth. A scintillator is a material that collides with an incoming particle and absorbs high-energy photons and incident particles to emit pulses of light. It is made using organic and inorganic crystals, organic liquids, and noble and scintillating gases. As it is cost-efficient and offers fast response time, it is widely used in Europe to detect particles in nuclear and particle physics.
The rising incidences of lifestyle diseases, along with the increasing integration of scintillators in various medical equipment, represents one of the key factors impelling the market growth. Moreover, scintillators are employed in the defense and military sectors to strengthen homeland security. Apart from this, they are used to detect high-intensity gamma radiation and monitor nuclear material and waste. This, in confluence with the rising adoption of alternative energy sources, is escalating the demand for scintillators across the region. Furthermore, the increasing number of nuclear power reactors and rising investments in research and development (R&D) projects are contributing to the market growth. In line with this, there has been a rise in the demand for scintillators for developing airborne radiation mapping platforms for detecting radionuclides in case of nuclear power plant failure. On account of these factors, IMARC Group expects the market to exhibit steady growth during the forecast period (2020-2025).
IMARC Group provides an analysis of the key trends in each sub-segment of the Europe scintillator market report, along with forecasts for growth at the region level from 2020-2025. Our report has categorized the market based on region, composition of material, end product and application.
Breakup by Composition of Material:
Breakup by End Product:
Breakup by Application:
Breakup by Country:
The competitive landscape of the industry has also been examined along with the profiles of the key players.
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