Experimental subatomic physics
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- Imaging detectors of Medipix family
- New technologies and materials for position sensitive
radiation detectors (3D detectors,
CdTe, BN, ...)
- Monte-Carlo simulations of detection proces, detectors
characterization and tests
- Development of readout electronics (USB and FITPix) and software (Pixelman)
- Methods of radiation imaging (neutron imaging,
X-ray microradiography
and tomography, phase sensitive imaging, XRF, Radiography with heavy charged particles, CINAA
...)
- Aplications of imaging detectors (medical science,
biology, material science, dosimetry ...)
- Imaging detectors in fundamental physical experiments (Plasma induced
nuclear excitation, Nuclear
fission, Channeling-blocking,
radiation monitoring for ATLAS, detection of ultra cold neutrons)
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- R&D detectors operating at room temperature
- 3D detectors based on Si technology
- Position sensitive semiconductor detectors
- Radiation hardness semiconductor detectors
- Detectors of thermal neutrons fabricated from nitride bor
- Detectors of thermal neutrons fabricated from semi-3D Si technology
- Use of material and electronic characterization for basic tests of detectors and detection structures
- Development and use of detection tests for experimental study of detectors and detection structures
- Development of HW&SW for detector DAQ
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Particle physics

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- Detection of high-energy cosmic rays: Experiment
CZELTA
- Detection of Dark Matter: Experiment
PICASSO.
- Neutrino physics:
NEMO 3
and
TGV
experiments.
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- Technique of coincidence neutron activatio analysis (CINAA)
- Alpha spectrometry: determination of Radon concentration in air
- X-ray fluorescence and imaging (XRF)
- Position sensitive spectrometry of charged particles for: detectors studies, channeling-blocking and radiography
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Radiation in space