Lehman J H, Aust J A
Appl Opt. 1998 Jul 1;37(19):4210-2. doi: 10.1364/ao.37.004210.
Using electric-field poling at room temperature, we selectively reversed the direction of the spontaneous polarization in a 200-mum-thick, z-cut LiNbO(3) electret to produce a bicell pyroelectric detector. The detector required only a single set of electrodes, one electrode on the front surface and one on the back surface. Microphonic noise that is typical of monocell pyroelectric detectors is reduced in the present device. Our spatial uniformity data indicate that the optical response of one half of the bicell detector area was equal to and opposite the other half within 1.2%. The microphonic suppression of the bicell pyroelectric detector was less than -36 dB from 10 to 50 Hz and less than -118 dB at 35 Hz of that of a reference monocell pyroelectric detector. The substrate thickness is significantly greater than those of other domain-engineered pyroelectric detector designs and allows us to build practical, large-area detectors for radiometric applications.
在室温下利用电场极化,我们在一块200微米厚的z切割铌酸锂驻极体中选择性地反转了自发极化方向,以制造一个双单元热释电探测器。该探测器仅需一组电极,一个在前表面,一个在后表面。在本装置中,单单元热释电探测器典型的颤噪噪声得以降低。我们的空间均匀性数据表明,双单元探测器区域一半的光学响应与另一半相等且相反,偏差在1.2%以内。双单元热释电探测器的颤噪抑制在10至50赫兹时小于-36分贝,在35赫兹时相对于参考单单元热释电探测器小于-118分贝。该衬底厚度明显大于其他畴工程热释电探测器设计的厚度,这使我们能够制造用于辐射测量应用的实用大面积探测器。