Development of a Compton Imager Setup
Anuraag Arya, Harmanjeet Singh Bilkhu, Sandeep Vishwakarma, Hrishikesh Belatikar, Varun Bhalerao, Abhijeet Ghodgaonkar, Jayprakash G. Koyande, Aditi Marathe, N. P. S. Mithun, Sanjoli Narang, Sudhanshu Nimbalkar, Pranav Page, Sourav Palit, Arpit Patel, Amit Shetye

TL;DR
This paper demonstrates a laboratory setup for Compton imaging using CZT detectors, improving timing resolution and concurrent readout, to reconstruct source locations in the hard X-ray regime.
Contribution
The study introduces a novel Compton imager setup with concurrent detector readout and enhanced timing resolution, demonstrating effective source localization in the laboratory.
Findings
Successfully reconstructed source location with 16-30 degree angular response.
Improved timing resolution from 20 μs to 7.5 μs.
Validated Compton imaging principle with laboratory experiments.
Abstract
Hard X-ray photons with energies in the range of hundreds of keV typically undergo Compton scattering when they are incident on a detector. In this process, an incident photon deposits a fraction of its energy at the point of incidence and continues onwards with a change in direction that depends on the amount of energy deposited. By using a pair of detectors to detect the point of incidence and the direction of the scattered photon, we can calculate the scattering direction and angle. The position of a source in the sky can be reconstructed using many Compton photon pairs from a source. We demonstrate this principle in the laboratory by using a pair of Cadmium Zinc Telluride (CZT) detectors sensitive in the energy range of 20-200 keV, similar to those used in /CZT Imager (CZTI). The laboratory setup consists of the two detectors placed perpendicular to each other in…
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Taxonomy
TopicsMedical Imaging Techniques and Applications · Advanced Radiotherapy Techniques · Radiation Detection and Scintillator Technologies
