红外光电子学的新型火相结构

I. Blonskij, V. F. Kosorotov, L. V. Shchedrina, L. V. Levash
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引用次数: 5

摘要

红外光电子学领域提出了一种具有可控极化特性的新型感应极介质,与真正的热释电材料相比,它具有独特的物理特性。在这些有效热释电结构的基础上,提出了一种用于测量可见光到中红外光谱范围内强激光和超强激光通量的新型热释电传感器。第一类传感器-多功能热释电变换器,第二类-热释电传输型功率传感器。由于自发电矩的存在,真正的热释电器件不可能获得高传输率,所以第二类传感器是基于三次热释电效应工作的器件,这种效应在非热释电器件中也有记录。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New pyroactive structures for infrared optoelectronics
Basically new induced polar dielectric media with controlled polarization properties and possessing unique physical characteristics as compared with the true pyroelectrics are advanced for IR optoelectronics.On the base of these effective pyroactive structures a new class of pyroelectric sensor for measurements of intense and super-intense laser fluxes for the spectral range from visible to middle IR is proposed. The first type sensors - multifunctional pyroelectric converters, the second type - pyroelectric transmission-type power sensors. Because it is impossible to get a high transmission of the true pyroelectrics due to the spontaneous electric moment, sensors of the second type are the devices operating on the tertiary pyroelectric effect, that has been registered in non-pyroelectrics, too.
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