Major Research Fields
X-ray Grating Interferometer (Laboratory Source)
Research on analyzing microstructures and defects of materials utilizing laboratory-based X-ray grating interferometry. This contributes significantly to non-destructive testing and materials science fields.
X-ray Grating Interferometer (Synchrotron Source)
High-resolution X-ray grating interferometry research using synchrotron radiation, enabling more precise and in-depth analysis of materials.
Neutron Imaging Research
Non-destructive analysis of internal structures of materials that are hard to visualize via X-rays, such as hydrogen and lithium, using neutron imaging methods.
Radiation Therapy Research
Executing optimization studies for radiation therapy technologies and the development of innovative treatment solutions.
Interior Tomography Algorithm
Focuses on developing tomography algorithms that precisely reconstruct internal configurations from a limited field of view.
Micro-CT
Research on Micro-CT technologies and applications that visualize 3D configurations of fine samples in high resolutions.
Industrial Phase Contrast Radiography
Developing and applying phase-contrast radiography imaging technologies designed for non-destructive inspections in industrial locations.
K-edge Interior Tomography
An interior tomography technique that analyzes the composition of materials utilizing the K-edge absorption energy of specific elements.
Neutron Experiment using Compact Neutron Sources
Neutron experiments and application research using compact neutron sources to enhance accessibility and expand utilization fields.
Environmental Radiation
Contributing to radiation safety and environmental protection through the advancement of environmental radiation measurement and analysis techniques.