<span style="color: rgb(51, 51, 51); font-family: arial, helvetica, sans-serif; font-size: 13px; line-height: 22px; background-color: rgb(248, 248, 248);">In order to identify the density and material type, high energy protons, electrons, and heavy ions are used to radiograph dense objects. The particles pass through the object, undergo multiple coulomb scattering, and are focused onto an image plane by a magnetic lens system. A modified beam line at the Institute of Modern Physics of the Chinese Academy of Sciences has been developed for heavy-ion radiography. It can radiograph a static object with a spatial resolution of about 65 mu m (1 sigma). This paper presents the heavy-ion radiography facility at the Institute of Modern Physics, inc...
<span style="color: rgb(46, 46, 46); font-family: Arial, Helvetica, "Lucida Sans Unicode",...
We are developing techniques for imaging beams in heavy-ion beam fusion experiments in the HIF-VNL i...
Heavy ion therapy can deliver high doses with high precision. However, image guidance is needed to r...
Several methods for imaging using accelerated heavy ion beams are being investigated at Lawrence Ber...
The authors describe how protons with energies of 800 MeV or greater can be used as radiographic pro...
High energy protons of 10 to 50 GeV can be used to radiograph dense objects. Because the transmitted...
This is the final report of a one-year, Laboratory-Directed Research and Development (LDRD) project ...
The capability has been successfully developed at the Los Alamos Nuclear Science Center (LANSCE) to ...
We have developed a heavy-ion computed tomography (IonCT) system using a scintillation screen and an...
Heavy ion therapy is a promising cancer therapy technique due to the sharper Bragg peak and smaller ...
<span style="color: rgb(51, 51, 51); font-family: arial, helvetica, sans-serif; font-size: 13px; lin...
A high-magnification high-resolution option is desirable for the study of small-scale dynamic experi...
In particle therapy, the x-ray based treatment planning converting photon attenuation values to rela...
Charged-particle microbeams can be used to irradiate individual cells with micron precision and with...
<span style="color: rgb(51, 51, 51); font-family: arial, helvetica, sans-serif; font-size: 13px; lin...
<span style="color: rgb(46, 46, 46); font-family: Arial, Helvetica, "Lucida Sans Unicode",...
We are developing techniques for imaging beams in heavy-ion beam fusion experiments in the HIF-VNL i...
Heavy ion therapy can deliver high doses with high precision. However, image guidance is needed to r...
Several methods for imaging using accelerated heavy ion beams are being investigated at Lawrence Ber...
The authors describe how protons with energies of 800 MeV or greater can be used as radiographic pro...
High energy protons of 10 to 50 GeV can be used to radiograph dense objects. Because the transmitted...
This is the final report of a one-year, Laboratory-Directed Research and Development (LDRD) project ...
The capability has been successfully developed at the Los Alamos Nuclear Science Center (LANSCE) to ...
We have developed a heavy-ion computed tomography (IonCT) system using a scintillation screen and an...
Heavy ion therapy is a promising cancer therapy technique due to the sharper Bragg peak and smaller ...
<span style="color: rgb(51, 51, 51); font-family: arial, helvetica, sans-serif; font-size: 13px; lin...
A high-magnification high-resolution option is desirable for the study of small-scale dynamic experi...
In particle therapy, the x-ray based treatment planning converting photon attenuation values to rela...
Charged-particle microbeams can be used to irradiate individual cells with micron precision and with...
<span style="color: rgb(51, 51, 51); font-family: arial, helvetica, sans-serif; font-size: 13px; lin...
<span style="color: rgb(46, 46, 46); font-family: Arial, Helvetica, "Lucida Sans Unicode",...
We are developing techniques for imaging beams in heavy-ion beam fusion experiments in the HIF-VNL i...
Heavy ion therapy can deliver high doses with high precision. However, image guidance is needed to r...