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Original Articles

Thermal properties of lanthanum modified lead zirconate titanate (PLZT), lithium niobate and lithium tantalate

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Pages 153-160 | Received 20 Jun 1987, Published online: 08 Feb 2011

References

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  • Goldberg , L. and Lee , S. H. 1979 . Integrated optical half adder circuit . Appl. Opt. , 18 ( 12 ) : 2045 – 2051 .
  • Reedy , R. and Lee , S. H. 1984 . Silicon photodetector integrated on a lithium tantalate substrate . Appl. Phys. Lett. , 44 : 19
  • Duncan , J. and Starling , S. G. 1957 . “ A Text Book of Physics ” . 355 New York : Macmillan and Co. Ltd. .
  • Toulowkian , Y. S. , Powell , R. W. , Hol , C. Y. and Nicolarow , M. C. 1973 . “ Thermophysical Properties of Matter ” . In Thermal diffusivity , Vol. 10 , 16a New York & Washington : IFI/Plenum .
  • Vandersande , J. W. and Pohl , R. O. 1980 . Simple apparatus for the measurement of thermal diffusivity between 80–500 K using the modified Angstrom method . Rev. Sci. Instrum. , 51 ( 12 ) : 1694
  • Savvides , N. and Muray , W. 1978 . Apparatus for the measurement of thermal diffusivity featuring a low frequency sine wave generator and a digital phase meter . J. Phys. E. Sci. Instrum. , 11 : 941
  • Carslaw , H. S. 1921 . “ Conduction of Heat in Solids ” . London : Macmillan and Co. .
  • Private communication with R. Wadiak of Motorola, Scottsdale, AZ. Room temperature measurements (no accuracy specified) of PLZT gave estimates of k = 3 × 10−3 cal/sec/cm/°C, cp = 0.1 cal/gm−°C and p = 7.8 gm/cm3. With D = k/pcp , these values yield a value of 3.8 × 10−3 cm2/sec for thermal diffusivity.
  • Zhdanova , V. , Klyuew , V. , Lemanov , V. , Smirnov , I. and Tikhonov , V. 1968 . Thermal properties of Lithium Niobate crystals . Sov. Phys. - Sol. State , 10 ( 6 ) : 1360
  • “ Surface Wave Crystals ” . Application note from Crystal Technology, Inc., Mountain View, CA. .

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