Daniel J. Valentino
Purdue University
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Publication
Featured researches published by Daniel J. Valentino.
ieee sensors | 2015
Sean Scott; Charilaos Mousoulis; Nithin Raghunathan; Dimitrios Peroulis; Daniel J. Valentino; Paul Alexander Walerow; Mark R. Salasky; Harikrishna Rajabather; James Thistlethwaite; Timothy McNamee
Presented is the first accumulating capacitive radiation sensor for low-dose, long-term exposures observed in occupational dosimetry. The sensors capacitance-voltage curve undergoes a semi-permanent negative shift due to ionizing radiation. By measuring the change in capacitance at a given voltage in the depletion region, the ionizing radiation that has been present on the sensor can be extracted. In order to achieve the low dose resolution required (less than 100 μGy) for occupational dosimetry, parameters such as the oxide thickness and annealing conditions are optimized. The result for a 2 mm × 2 mm sensor is 1.6 fF per 100 μGy, a capacitance shift detectable with commercial electronics.
Archive | 2013
Daniel J. Valentino; James Thistlethwaite; R. Craig Yoder
Archive | 2014
P. Alexander Walerow; Mark R. Salasky; Daniel J. Valentino; Brahim Moreno; Marc Million
Archive | 2013
P. Alexander Walerow; Mark R. Salasky; Daniel J. Valentino
Archive | 2014
Daniel J. Valentino; R. Craig Yoder
european microwave conference | 2015
Sean Scott; Nithin Raghunathan; Charilaos Mousoulis; Dimitrios Peroulis; Daniel J. Valentino; Harikrishna Rajabather; James Thistlethwaite; Timothy McNamee; Paul Alexander Walerow; Mark R. Salasky
Archive | 2014
Daniel J. Valentino; R. Craig Yoder; Mark R. Salasky
Archive | 2014
Daniel J. Valentino; Mark R. Salasky
ieee sensors | 2016
Charilaos Mousoulis; Christian I. Elmiger; Manik Singhal; Yi Xuan; Timothy McNamee; James Thistlethwaite; Paul Alexander Walerow; Mark R. Salasky; Sean Scott; Daniel J. Valentino; Dimitrios Peroulis
ieee sensors | 2017
Yi Xuan; Charilaos Mousoulis; Anurag Kumar; Christian I. Elmiger; Sean Scott; Daniel J. Valentino; Dimitrios Peroulis