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- W1959548324 abstract "A thin film semiconductor device was grown by MBE methods, characterized for material quality and evaluated for suitability as a room temperature gamma radiation detector. The objective was to produce a device that was superior to current semiconductor detectors, namely HPGe and CZT which have different limitations due to intrinsic material characteristics. AlSb was chosen because of its desirable properties which include the high atomic number of antimony (Z = 51), relatively large band gap (Eg = 1.6 eV), and theorized high dual carrier mobility. Simulations were performed using MCNP5 to predict energy deposited in AlSb by low energy gammas from Ba-133 and Co-57. A benchmark model was developed using a silicon surface barrier detector to validate AlSb simulations. Prior to radiation experiments, a series of characterization methods were employed to evaluate the material quality. Surface features were measured by Nomarski imaging and AFM, revealing an orange peel texture and screw dislocations. The material composition was examined using XRD and the AlSb layer was observed to be fairly narrow" @default.
- W1959548324 created "2016-06-24" @default.
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- W1959548324 date "2014-02-14" @default.
- W1959548324 modified "2023-09-27" @default.
- W1959548324 title "Examining Thin Film AlSb for Room Temperature Gamma Detectors" @default.
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