Thomas E. Blue

Affiliations: 
Nuclear Engineering Ohio State University, Columbus, Columbus, OH 
Area:
Nuclear Engineering
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"Thomas Blue"

Children

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Mehdi Reisi Fard grad student 2006 Ohio State
David P. Hawn grad student 2012 Ohio State
Christian M. Petrie grad student 2014 Ohio State
Michael Eades grad student 2012-2016 Engineering
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Publications

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Birri A, Petrie CM, Blue TE. (2020) Analytic Thermal Model of an Optical Fiber Based Gamma Thermometer and its Application in a University Research Reactor Ieee Sensors Journal. 20: 7060-7068
Birri A, Wilson BA, Blue TE. (2019) Deduced Refractive Index Profile Changes of Type I and Type II Gratings When Subjected to Ionizing Radiation Ieee Sensors Journal. 19: 5000-5006
Farzana E, Mauze A, Varley JB, et al. (2019) Influence of neutron irradiation on deep levels in Ge-doped (010) β-Ga2O3 layers grown by plasma-assisted molecular beam epitaxy Apl Materials. 7: 121102
Farzana E, Chaiken MF, Blue TE, et al. (2019) Impact of deep level defects induced by high energy neutron radiation in β-Ga2O3 Apl Materials. 7: 022502
Petrie CM, Birri A, Blue TE. (2019) High-dose temperature-dependent neutron irradiation effects on the optical transmission and dimensional stability of amorphous fused silica Journal of Non-Crystalline Solids. 525: 119668
Taylor NR, Alnajjar N, Jarrell J, et al. (2019) Isotopic concentration of uranium from alpha spectrum of electrodeposited source on 4H-SiC detector at 500 °C Journal of Radioanalytical and Nuclear Chemistry. 320: 441-449
Wilson BA, Petrie CM, Blue TE. (2018) High‐temperature effects on the light transmission through sapphire optical fiber Journal of the American Ceramic Society. 101: 3452-3459
Chaiken MF, Blue TE. (2018) An Estimation of the Neutron Displacement Damage Cross Section for Ga2O3 Ieee Transactions On Nuclear Science. 65: 1147-1152
McCary KM, Wilson BA, Birri A, et al. (2018) Response of Distributed Fiber Optic Temperature Sensors to High-Temperature Step Transients Ieee Sensors Journal. 18: 8755-8761
Wilson BA, Blue TE. (2018) Quasi-Distributed Temperature Sensing Using Type-II Fiber Bragg Gratings in Sapphire Optical Fiber to Temperatures up to 1300°C Ieee Sensors Journal. 18: 8345-8351
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