We studied the track response of CR-39 plastic nuclear track detectors (PNTD) for low (100 MeV/n) energy heavy ions using the atomic force microscope (AFM). CR-39 PNTD was exposed to several heavy ion beams of different energy at HIMAC (Heavy Ion Medical Accelerator in Chiba). For AFM measurement, the amount of bulk etch was controlled to be ∼2 μm in order to avoid etching away of short range tracks. The response data obtained by AFM for ∼2 μm bulk etch was in good agreement with data obtained by the conventional optical microscope analysis for larger bulk etch. The response data from low energy beams (stopping near the surface) was also consistent with the data from high energy beams (penetrating the detector) as a fu...
We have been measured the recoil particles due to the proton irradiation in target material. CR-39 d...
The radial core size of tracks in CR-39 plastics has been determined for several heavy ions, O(8.6Me...
The charge resolution (delta Z) for heavy ions (nuclear charge: Z < 40) of 0.1-1 GeV/n energy in CR-...
We studied the track response of CR-39 plastic nuclear track detectors (PNTD) for low (100 MeV/n) en...
In addition to energy loss by ionization process, protons of energy >similar to 50 MeV, such as thos...
The standard method of analysis used with CR-39 plastic nuclear track detector (PNTD)d chemical etch...
In aaddition to energy loss bay ionization process, protons, of energy >~50MeV,such as those used in...
Using standard visible light microscopy, we are able to observe particle tracks produced by <10 micr...
In addition to energy loss bay ionization process, protons of energy >~50 MeV, such as those used in...
For protons of energy up to a few MeV, the temporal evolution of etched latent tracks in CR-39 nucle...
In this contribution we report on the high applicability of CR-39 track etch detector for the measur...
Production of target fragments from reactions of 160 MeV proton beams in aluminum and polyethylene w...
The radial core size of tracks in CR-39 plastics has been determined for several heavy ions, O (8.6 ...
One of the challenging tasks in the application of solid-state nuclear track detectors (SSNTDs) is t...
CR-39 plastic is well-known as most sensitive nuclear track detector for proton and heavy ions. CR-3...
We have been measured the recoil particles due to the proton irradiation in target material. CR-39 d...
The radial core size of tracks in CR-39 plastics has been determined for several heavy ions, O(8.6Me...
The charge resolution (delta Z) for heavy ions (nuclear charge: Z < 40) of 0.1-1 GeV/n energy in CR-...
We studied the track response of CR-39 plastic nuclear track detectors (PNTD) for low (100 MeV/n) en...
In addition to energy loss by ionization process, protons of energy >similar to 50 MeV, such as thos...
The standard method of analysis used with CR-39 plastic nuclear track detector (PNTD)d chemical etch...
In aaddition to energy loss bay ionization process, protons, of energy >~50MeV,such as those used in...
Using standard visible light microscopy, we are able to observe particle tracks produced by <10 micr...
In addition to energy loss bay ionization process, protons of energy >~50 MeV, such as those used in...
For protons of energy up to a few MeV, the temporal evolution of etched latent tracks in CR-39 nucle...
In this contribution we report on the high applicability of CR-39 track etch detector for the measur...
Production of target fragments from reactions of 160 MeV proton beams in aluminum and polyethylene w...
The radial core size of tracks in CR-39 plastics has been determined for several heavy ions, O (8.6 ...
One of the challenging tasks in the application of solid-state nuclear track detectors (SSNTDs) is t...
CR-39 plastic is well-known as most sensitive nuclear track detector for proton and heavy ions. CR-3...
We have been measured the recoil particles due to the proton irradiation in target material. CR-39 d...
The radial core size of tracks in CR-39 plastics has been determined for several heavy ions, O(8.6Me...
The charge resolution (delta Z) for heavy ions (nuclear charge: Z < 40) of 0.1-1 GeV/n energy in CR-...