Title :
Physical nature of piezoelectricity
Author :
Poplavko, Y.M. ; Yakimenko, Y.I.
Author_Institution :
Microelectron. Dept., Nat. Tech. Univ. of Ukraine KPI, Kiev, Ukraine
Abstract :
A novel conception of peizoelectricity physical nature is proposed and dicussed. Some peculiarities of piezoelectric crystals (so cold polar-neutral crystals) would be described by a concept of their intrinsic (latent) polarity. Its components show a critical law P ~ (θ - T)n and vanish at the phase transition temperature θ. The critical parameter equals to n = 1 if all components of intrinsic polarity are flatness arranged (two-dimensional case, 2D). For spatial (3D) arrangement of the latent polarity components this exponent is n = 2. These differ essentially from 1D ferroelectric spontaneous polarization that shows PS(T) critical law with the n = 0.5. For technical application, it means that under the anisotropy of boundary conditions any high-gap III-V semiconductor-piezoelectric shows a behavior of pyroelectric crystal. It is important that such a crystal might be used as far infrared sensor or as a volume-piezoeffect sensor integrated with amplifier in one III-V crystal. On the other hand, any device based on III-V semiconductor which have erroneous orietation of crystal can generate polarisational noises due to vibrations or thermal fluctuations.
Keywords :
III-V semiconductors; amplifiers; critical exponents; crystal orientation; dielectric polarisation; ferroelectric semiconductors; ferroelectricity; infrared detectors; piezoelectric semiconductors; piezoelectricity; pyroelectric detectors; pyroelectricity; 1D ferroelectric spontaneous polarization; III-V semiconductor crystal; amplifier; cold polar-neutral crystals; critical parameter; crystal orientation; high-gap III-V semiconductor-piezoelectrics; infrared sensor; intrinsic latent polarity; latent polarity components; phase transition temperature; piezoelectric crystals; piezoelectricity; polarisational noises; pyroelectric crystal; sensor; spatial 3D arrangement; thermal fluctuations; vibrations; volume-piezoeffect sensor; Crystals; Piezoelectric effect; Piezoelectric polarization; Strain; Tensile stress; Thermal expansion; Three-dimensional displays; far infrared sensor; phase transitions; piezoelectric; pyroelectric; sensor for volumetric piezoelectric effect; source of noise;
Conference_Titel :
Electronics and Nanotechnology (ELNANO), 2014 IEEE 34th International Conference on
Conference_Location :
Kyiv
Print_ISBN :
978-1-4799-4581-8
DOI :
10.1109/ELNANO.2014.6873979