AbstractA coded source imaging (CSI) system has been developed and tested at the High Flux Isotope Reactor (HFIR) CG-1D beamline at Oak Ridge National Laboratory (ORNL). The goal of this system is to use magnification to improve resolution of the imaging system beyond the detector resolution. For this system, coded masks have been manufactured at 10μm resolution with 9μm thick Gd patterned on Si wafers, a system model base iterative reconstruction code developed, and experiments have been performed at resolutions of 200μm, 100μm, 50μm, 20μm, and 10μm with the object place greater than 5.5m from the detector giving magnifications up to 25 times
Neutron radiography (NR) is a unique inspection method that can inspect for complex part placements,...
Experiments have been conducted using a modern high-resolution {sup 3}He two-dimensional position-se...
In this paper we are going to assess the variations of neutron images using a series of Monte Carlo ...
AbstractA coded source imaging (CSI) system has been developed and tested at the High Flux Isotope R...
AbstractCoded source imaging (CSI) is a possible method to solve the contradiction between neutron f...
A coded source could increase the neutron flux with high LID ratio. It may benefit a neutron imaging...
AbstractCoded source imaging is a possible technique to improve the quality of neutron imaging based...
The capability to perform neutron radiography and computed tomography is being developed at Oak Ridg...
This research and development program was designed to improve nondestructive evaluation of large mec...
AbstractThe Oak Ridge National Laboratory Neutron Sciences Directorate has installed a neutron imagi...
ABSTRACT A new thermal neutron imaging system has been constructed, based on a 20-cm x 17-cm He-3 po...
We have developed a neutron detection system for accelerator based neutron radiography and tomograph...
Limitations of fast neutron radiography include low detection efficiency and poor spatial resolution...
We propose a novel processing protocol framework for neutron radiograph image quality improvement. N...
We are currently developing a high-energy (10 - 15 MeV) neutron imaging system for use in NDE applic...
Neutron radiography (NR) is a unique inspection method that can inspect for complex part placements,...
Experiments have been conducted using a modern high-resolution {sup 3}He two-dimensional position-se...
In this paper we are going to assess the variations of neutron images using a series of Monte Carlo ...
AbstractA coded source imaging (CSI) system has been developed and tested at the High Flux Isotope R...
AbstractCoded source imaging (CSI) is a possible method to solve the contradiction between neutron f...
A coded source could increase the neutron flux with high LID ratio. It may benefit a neutron imaging...
AbstractCoded source imaging is a possible technique to improve the quality of neutron imaging based...
The capability to perform neutron radiography and computed tomography is being developed at Oak Ridg...
This research and development program was designed to improve nondestructive evaluation of large mec...
AbstractThe Oak Ridge National Laboratory Neutron Sciences Directorate has installed a neutron imagi...
ABSTRACT A new thermal neutron imaging system has been constructed, based on a 20-cm x 17-cm He-3 po...
We have developed a neutron detection system for accelerator based neutron radiography and tomograph...
Limitations of fast neutron radiography include low detection efficiency and poor spatial resolution...
We propose a novel processing protocol framework for neutron radiograph image quality improvement. N...
We are currently developing a high-energy (10 - 15 MeV) neutron imaging system for use in NDE applic...
Neutron radiography (NR) is a unique inspection method that can inspect for complex part placements,...
Experiments have been conducted using a modern high-resolution {sup 3}He two-dimensional position-se...
In this paper we are going to assess the variations of neutron images using a series of Monte Carlo ...