An Optical Readout TPC (O-TPC) for Studies in Nuclear Astrophysics With Gamma-Ray Beams at HIgS
M. Gai, M.W. Ahmed, S.C. Stave, W.R. Zimmerman, A. Breskin, B., Bromberger, R. Chechik, V. Dangendorf, Th. Delbar, R.H. France III, S.S., Henshaw, T.J. Kading, P.P. Martel, J.E.R. McDonald, P.-N. Seo, K., Tittelmeier, H.R. Weller, and A.H. Young (UConn-Yale-TUNL-Weizmann-PTB-UCL

TL;DR
This paper details the development and initial testing of an Optical Readout TPC detector designed to measure nuclear reaction cross sections relevant to stellar evolution using gamma-ray beams at HIgS.
Contribution
It introduces a novel O-TPC detector with optical readout capabilities for nuclear astrophysics experiments at gamma-ray facilities.
Findings
Successful calibration with alpha particles achieving 3.0% energy resolution.
Initial in-beam tests demonstrated detection of alpha and 12C particle tracks.
The detector system is capable of measuring nuclear reaction products relevant to astrophysics.
Abstract
We report on the construction, tests, calibrations and commissioning of an Optical Readout Time Projection Chamber (O-TPC) detector operating with a CO2(80%) + N2(20%) gas mixture at 100 and 150 Torr. It was designed to measure the cross sections of several key nuclear reactions involved in stellar evolution. In particular, a study of the rate of formation of oxygen and carbon during the process of helium burning will be performed by exposing the chamber gas to intense nearly mono-energetic gamma-ray beams at the High Intensity Gamma Source (HIgS) facility. The O-TPC has a sensitive target-drift volume of 30x30x21 cm^3. Ionization electrons drift towards a double parallel grid avalanche multiplier, yielding charge multiplication and light emission. Avalanche induced photons from N2 emission are collected, intensified and recorded with a Charge Coupled Device (CCD) camera, providing…
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