An investigation of reading thermal images processes by a thermal image receiver made in the image intensifier tube architecture
Grevcev A. S.1, Zolotukhin P. A.1, Il’ichev E. A.1, Petrukhin G. N.1, Popov A. V.
1, Rychkov G. S. 1
1National Research University of Electronic Technology (MIET), Zelenograd, Russia
Email: den.lorndern@gmail.com, pasher2086@yandex.ru, edil44@mail.ru, georg.petruhin@gmail.com, alexcoretex@gmail.com, mstlena2@mail.ru
The results of calculations of electric fields, potentials, and trajectories of photoelectrons calculations of single-channel dual-spectral thermal imager, implemented in the IIT architecture are presented. The values of the optimal potentials on the control electrodes (microchannel plate, reading electrode, and photocathode) that form a picture of the images of objects and ensure the correct reading of the potential relief from the surface of the sensor-converter pyroelectric film of the image thermal receiver under discussion are determined. Keywords: image intensifier tube, spontaneous polarization, a pyroelectric sensor, photocathode, photoelectronic emission, thermal object image receiver, secondary electron emission.
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