The development and application of a charge-coupled device (CCD) sensor for neutron detection is described. The sensor provides images of neutron-induced single-event effects (SEEs) at 9 μm pixel resolution and a charge/pixel resolution of typically 36.6 electronic charges. Example results are presented, showing the charge profiles resulting from single events observed during tests in a representative neutron spectrum. The sensor enables aspects of SEE phenomena to be studied directly in more detail than hitherto
Neutrons are an invaluable probe in a wide range of scientific, medical and commercial endeavors. Ma...
Neutrons may produce charged particles, which can affect modern electronic components. Depending on ...
This research developed a quantum limited neutron detector with high spatial resolution utilizing Ch...
We use charge-coupled devices (CCDs) to characterise the single-event effect (SEE) inducing properti...
We use charge-coupled devices (CCDs) to characterise the single-event effect (SEE) inducing properti...
Cosmic neutron radiation in the atmosphere is a harsh environment for modern aircraft electronics. ...
The electronics employed around particle accelerators can be disturbed or damaged because of single ...
We have developed a neutron detection system for accelerator based neutron radiography and tomograph...
A charge coupled device (CCD) camera's images were degraded by neutron-induced blemishes, called sta...
This paper studies the suitability of neuromorphic event-based vision cameras for spaceflight and th...
We show how a moderating neutron detector can be designed for use as a proxy for devices subject to ...
We describe an in-situ fast neutron dosimetry system using silicon photodiodes, and discuss its appl...
We describe an in-situ fast neutron dosimetry system using silicon photodiodes, and discuss its appl...
In the today’s climate of increased global terrorism, the threat of a radiological incident is becom...
The investigation of radiation effect in particle radiation fields requires the detection of single ...
Neutrons are an invaluable probe in a wide range of scientific, medical and commercial endeavors. Ma...
Neutrons may produce charged particles, which can affect modern electronic components. Depending on ...
This research developed a quantum limited neutron detector with high spatial resolution utilizing Ch...
We use charge-coupled devices (CCDs) to characterise the single-event effect (SEE) inducing properti...
We use charge-coupled devices (CCDs) to characterise the single-event effect (SEE) inducing properti...
Cosmic neutron radiation in the atmosphere is a harsh environment for modern aircraft electronics. ...
The electronics employed around particle accelerators can be disturbed or damaged because of single ...
We have developed a neutron detection system for accelerator based neutron radiography and tomograph...
A charge coupled device (CCD) camera's images were degraded by neutron-induced blemishes, called sta...
This paper studies the suitability of neuromorphic event-based vision cameras for spaceflight and th...
We show how a moderating neutron detector can be designed for use as a proxy for devices subject to ...
We describe an in-situ fast neutron dosimetry system using silicon photodiodes, and discuss its appl...
We describe an in-situ fast neutron dosimetry system using silicon photodiodes, and discuss its appl...
In the today’s climate of increased global terrorism, the threat of a radiological incident is becom...
The investigation of radiation effect in particle radiation fields requires the detection of single ...
Neutrons are an invaluable probe in a wide range of scientific, medical and commercial endeavors. Ma...
Neutrons may produce charged particles, which can affect modern electronic components. Depending on ...
This research developed a quantum limited neutron detector with high spatial resolution utilizing Ch...