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1.
Article in English | MEDLINE | ID: mdl-19811986

ABSTRACT

Phonons in both ceramic samples KNbO(3) (KN) and K(0.5)Na(0.5)NbO(3) (KNN-50) were investigated from 10 to 900 K by means of Raman, infrared, and THz spectroscopy. First-order transitions from cubic to tetragonal phases were detected at about 755 K (in KN) and 710 K (in KNN-50), where the first component of the polarization appears. Transitions from the tetragonal to the orthorhombic phases take place around 510 and 475 K, respectively. The last transitions from orthorhombic to rhombohedral phases are strongly first-order type. T(C) is shifted from 200 K in KN to about 90 K in KNN-50. All Raman active modes below 200 cm(-1). disappear in KN but not in KNN-50. The overdamped soft mode present at high temperatures in the THz range changes its dielectric strength at each phase transition (when the corresponding component jumps to higher frequencies) and abruptly disappears from THz spectra in the rhombohedral phase, because it stiffens up to 200 cm(-1). This mode has lower frequency and higher dielectric strength in KNN-50.

2.
Phys Med Biol ; 53(24): 7063-71, 2008 Dec 21.
Article in English | MEDLINE | ID: mdl-19015579

ABSTRACT

Terahertz (THz) time-domain spectroscopy was used in vivo to measure the body reflectance with the aim of determining experimentally the influence of haemodialysis on the content of water in the human skin. For this purpose, an original methodology of determining the skin properties at THz frequencies from the reflectance was developed. A series of measurements were performed before and after dialysis with ten subjects. The results strongly indicate that the surface body hydration is not the main parameter determining the skin conductivity in the THz range.


Subject(s)
Kidney Diseases/pathology , Renal Dialysis/adverse effects , Skin Physiological Phenomena , Skin/pathology , Terahertz Spectroscopy/instrumentation , Terahertz Spectroscopy/methods , Water/metabolism , Electric Conductivity , Equipment Design , Feasibility Studies , Humans , Optics and Photonics , Skin/metabolism , Time Factors
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