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Tytuł artykułu

Optical properties of D-serine doped TGS crystals for pyroelectric sensors

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Refractive and birefringence indices in the range of transparency of 300 to 700 nm for triglycine sulphate crystals doped with D-serine molecules have been measured in the temperature range of 290 K to 340 K. The obtained optical properties are discussed together with characteristic electrical features of these materials used as pyroelectric sensors for measurement of temperature. The experimental results obtained in this study will be necessary as the reference data for comparison with the calculated refractive indices of TGS + D-serine on the basis of density functional theory. Determination of the proper position of D-serine, will reveal the features of TGS + D-serine crystal structure necessary to achieve stable unipolarity.
Wydawca
Rocznik
Strony
692--698
Opis fizyczny
Bibliogr. 28 poz., rys., tab.
Twórcy
  • The Ivan Franko National University of Lviv, 8 Kyrylo-and-Mefodii St., UA-79005 Lviv, Ukraine
  • The Ivan Franko National University of Lviv, 8 Kyrylo-and-Mefodii St., UA-79005 Lviv, Ukraine
  • Faculty of Electronics and Computer Sciences, Koszalin University of Technology, 2 Śniadeckich St., PL-75-453, Koszalin, Poland
  • The Ivan Franko National University of Lviv, 8 Kyrylo-and-Mefodii St., UA-79005 Lviv, Ukraine
autor
  • National University “Lviv Politechnic”, 12 Bandera St., UA-79013 Lviv, Ukraine
autor
  • National University “Lviv Politechnic”, 12 Bandera St., UA-79013 Lviv, Ukraine
Bibliografia
  • [1] Choe H.M., Judy J.MH., van der Ziel A., Ferroelectrics, 15 (1977), 181.
  • [2] Kremenchugski L.S., Rojtsina O.V., Pyroelectric detectors of radiation, Kiev, Naukova Dumka, 1979.
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  • [4] Beerman H.P., Opt. Laser Technol., 9 (1977), 38.
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  • [6] Predham M.M., Gerg R.K., Opt. Commun., 20 (1977), 422.
  • [7] Predham M.M., Gerg R.K., Ferroelectrics, 15 (1977), 195.
  • [8] Shaulov A., Ferroelectrics, 15 (1977), 203.
  • [9] Singh V.P., Ziel van der A., Ferroelectrics, 15 (1977), 135.
  • [10] Kladkevich M.D., Kremenchugski L.S., Samoilov V.B., Thermal radiation detectors, Leningrad, GOI, 1978.
  • [11] Seliuk B.V., Phys. Solid State, 20 (1978), 570.
  • [12] Felix P., Gamot P., Lacheav P., Raverdy Y., Ferroelectrics, 17 (1978), 543.
  • [13] Milovidova S.D., Burdanina N.A., Kamysheva L.N., Gridniev S.A., Verkhovets A.K., Ferroelectrics and Piezoelectrics, Kalinin University, Kalinin, 1977.
  • [14] McNaught A.D., Wilkinson A. (Eds.), IUPAC. Compendium of Chemical Terminology, 2nd ed., Blackwell Scientific Publications, Oxford, 1997.
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  • [19] Stankowska J., Czarnecka A., Dratwinska A., Ferroelectrics, 140 (1993), 65.
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  • [21] Romanyuk M.O., Andriyevsky B.V., Stadnyk V.YO., Kushnir O.S., J. Phys. Stud., 17 (2013), 3701.
  • [22] Romanyuk M.O., Workshop on crystal-and-physics and crystal-and-optics. Lviv, Publishing Center of the Ivan Franko, National University of Lviv, 2012.
  • [23] Tsedrik M.S., Ferroelectrics and Piezoelectrics, Kalinin University, Kalinin, 1982.
  • [24] Romanyuk N.A., Kostetski A.M., Ukr. Phys. J., 22 (1977), 965.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e022bbac-d349-489a-b701-b2fa3cb7f203
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