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First results from a high-frame-rate, multi-GHz ionizing particle detection system geared toward accelerator diagnostic applications
- Ferezghi, Mohammadreza Mohseni;
- Grace, Carl;
- Gulley, Mark;
- Jacobson, Bryce;
- Kim, Dongsung;
- Martinez-McKinney, Forest;
- McDaniel, James;
- McHale, Sean;
- Morris, Tyler;
- Mudford, Samuel;
- Padilla, Rene;
- Prakash, Tarun;
- Prebys, Eric;
- Schumm, Bruce A;
- Shin, Kyung-Wook;
- Smedley, John;
- Tiernan, Aidan;
- Wilder, Max
Published Web Location
https://doi.org/10.1103/m79w-ft8tAbstract
An integrated detection system, consists of a thin diamond sensor incorporated into a compact signal loop, coupled in turn to an application-specific integrated circuit readout chip, has been tested for the first time, using ps-duration electron pulses from the Next Linear Collider Test Accelerator at the SLAC National Accelerator Laboratory. For readout frame rates as high as 120 kHz, the detection system is shown to achieve a linear dynamic range of and a bandwidth of 4–5 GHz, with no ringing seen on the tail of the output pulse. These results represent the best-performing multi-GHz ionizing particle detection system achieved to date.
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