We report about a nuclear track imaging system which is designed to study in detail the ionization topology of charged particle tracks in a low-pressure gas. The detection method is based on a time projection chamber (TPC) filled with low-pressure triethylamine (TEA). Ionization electrons produced by energetic charged particles are three-dimensionally imaged by recording light from electron avalanches with an intensified CCD system. The detector permits to inves-tigate the spatial ionization distributions of particle tracks in gas, of equivalent length and resolution in tissue of 4 mm and 40 nm (RMS), respectively. We explain the relevance of this technique for dosimetry, describe the experimental method and the basic operation parameters. ...
Active target detection systems, where the gas used as the detection medium is also a target for nuc...
The three-dimensional (3-D) reconstruction of nuclear recoils is of interest for directional detecti...
The Time Projection method is ideal to track low kinetic energy charged particles, in particular for...
An imaging system for measuring the spatial distribtion of charged particle tracks in a low-pressure...
The development of a new detector designed to optically image the track of a charged particle in a g...
Clustered DNA damages are considered the critical lesions in the pathways leading from the initial e...
We are developing a new device for optically detecting and imaging the track of a charged particle i...
The Time Projection Chamber (TPC) is a detector of subatomic particles that images ionization in 3D...
We report on the construction, tests, calibrations and commissioning of an Optical Readout Time Proj...
We report on the construction, tests, calibrations and commissioning of an Optical Readout Time Proj...
Optically read out time projection chambers (TPCs) based on gaseous electron multipliers (GEMs) comb...
Detecting and localizing radiation is the very basis of physicists ’ work in a variety of fields, es...
Optically read out time projection chambers (TPCs) based on gaseous electron multipliers (GEMs) comb...
Time Projection Chambers (TPCs) with charge readout via micro pattern gaseous detectors can provide ...
We conceived and developed an experimental apparatus able to measure the track structure (the spatia...
Active target detection systems, where the gas used as the detection medium is also a target for nuc...
The three-dimensional (3-D) reconstruction of nuclear recoils is of interest for directional detecti...
The Time Projection method is ideal to track low kinetic energy charged particles, in particular for...
An imaging system for measuring the spatial distribtion of charged particle tracks in a low-pressure...
The development of a new detector designed to optically image the track of a charged particle in a g...
Clustered DNA damages are considered the critical lesions in the pathways leading from the initial e...
We are developing a new device for optically detecting and imaging the track of a charged particle i...
The Time Projection Chamber (TPC) is a detector of subatomic particles that images ionization in 3D...
We report on the construction, tests, calibrations and commissioning of an Optical Readout Time Proj...
We report on the construction, tests, calibrations and commissioning of an Optical Readout Time Proj...
Optically read out time projection chambers (TPCs) based on gaseous electron multipliers (GEMs) comb...
Detecting and localizing radiation is the very basis of physicists ’ work in a variety of fields, es...
Optically read out time projection chambers (TPCs) based on gaseous electron multipliers (GEMs) comb...
Time Projection Chambers (TPCs) with charge readout via micro pattern gaseous detectors can provide ...
We conceived and developed an experimental apparatus able to measure the track structure (the spatia...
Active target detection systems, where the gas used as the detection medium is also a target for nuc...
The three-dimensional (3-D) reconstruction of nuclear recoils is of interest for directional detecti...
The Time Projection method is ideal to track low kinetic energy charged particles, in particular for...