Physical properties of
tourmaline
by
Darrell Henry
Campanile Charities Professor of Geology and Geophysics at
Louisiana State University -- research specialty : metamorphic
petrology.
Contact -- (225)-578-2693, fax (225)-578-2302 or e-mail
dhenry@geol.lsu.edu .
Address: Department of Geology and Geophysics, Louisiana State
University, Baton Rouge, LA 70803.
Chatoyance/asterism
Bhaskara-Rao, A. and de Assis, A. D. (1968) Chatoyant and
pseudomorphosed tourmalines in northeastern Brazil. Journal da
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Eppler, W. F. (1958) Notes on asterism in spinel and chatoyancy in
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Graziani, G., Gubelin, C. G., and Lucchesi, S. (1982) Tourmaline
chatoyancy. Journal of Gemmology, 18, 181-193.
Density
Elastic constants
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minerals. Mineralogical Magazine. 39, 78-84.
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the Physics and Chemistry of Solids, 46, 1015-1018.
Tatli, A. and Ozkan, H. (1987) Variation of the elastic constants
of tourmaline with chemical composition. Physics and Chemistry of
Minerals, 14, 172-176.
Electrical properties
Arons, A. B., Cole, R. H., Kennedy, W. D. and Wilson, E. B. Jr.
(1947) Design and use of tourmaline gages for piezoelectric
measurement of explosion phenomena. Physical Reviews, 72, 176-177.
Baird, G. A. and Kennan, P. S. (1985) Electrical response of
tourmaline rocks to a pressure impulse. Tectonophysics, 111,
147-154.
Barker, B. (1980) Aschentrekker. Gems and Gemology, 16, 375-378.
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236-243.
Butler, Edward Taylor (1962) Methods of determining
pyroelectricity in tourmaline. American University, United-States;
Master's 40 p.
Curie, J. and Curie, P. (1880) Developpment par compession de
lelectricite polaire dans les cristaux hemiedres a faces
inclinees. Bulletin de la Societe Mineralogie de France, 3, 90.
Donnay, G. (1977) Structural mechanism of pyroelectricity in
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Drozhdin, S. N., Novik, V. K., Koptslk, V. A. and Kobyakov, I. B.
(1975) Pyroelectric properties of tourmaline and cancrinite
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Frondel, C. (1948) Tourmaline pressure gauges. American
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Annales de Chimie et de Physique. 57, 5-11.
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10,278-281.
Gavrilova, N. D., Drozhdin, S. N., Novik, V. K. and Maksimov, E.G.
(1983) Relationship between the pyroelectric coefficient and the
lattice dynamics of the pyroelectrics. Solid State Communications,
48, 129-133.
Gladkii, V. V. and Zheludev, I.S. (1956) Methods and results of an
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Hawkins, K. D., Mackinnon, I. D. R. and Schneeberger, H. (1995)
Influence of chemistry on the pyroelectric effect in tourmaline.
American Mineralogist, 80, 491-501.
Hearst, J. R., kani, G. B., and Geesaman, L. B. (1965)
Piezoelectric response of Z-cut tourmaline to shocks of up to 21
Kilobars. Journal of Applied Physics, 36, 3440-3444.
Helme, B. G.M. and King, P. J. (1977) Microwave acoustic
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Home, R. W. (1976) Aepinus, the tourmaline crystal, and the theory
of electricity and magnetism. Isis, 67, 21-30.
Keys, D. A. (1921) A piezoelectric method of measuring explosion
pressures. Philosophical Magazine (London, Edinburgh, and Dublin),
42, 473-488.
Keys, D. A. (1923) The adiabatic and isothermal piezo-electric
constants of tourmaline. Philosophical Magazine, 46, 999-1001.
Kittinger, E., Seil, and Tichy, J. (1979) Electroelastic effect in
tourmaline. Zeitschrift fur Naturforsh., 34a, 1352-1354.
Lastovickova, M. and Povondra, P. (1988) High temperature
electrical conductivity of tourmalines. Zhdanov, M. S.,
Berdichevsky, M. N., Fainberg,
Lewis, M. F., and Patterson, E. (1972) Assessment of tourmaline as
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Physics, 44, 10-13.
Martin, A. J. P. (1931) On a new method for detecting
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(1950) Piezoelectric Crystals and their Application to
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Maurice, M. E. (1930) On the demonstration of electric lines of
force and a new method of measuring the electric moment of
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Maxwell, J. C. (1873) A Treatise on Electricity and Magnetism.
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Mishra, S., Krishna Rao, A. V. and Rao, K. V. (1989) Dielectric
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Nambi, K. S. V. (1984) Pyroelectroluminescence induced by
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Niwa, Y., lizawa, O., Ishimoto, K., Jiang, X.X. and Kanoh, T.
(1993) Electromagnetic-wave emitting products and Kikoh potentiate
human-leukocyte flinctions. International Journal of
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Peng, M. S. and Wang, H. Y. (1994) Research on relation of tunnel
structure to electrical properties of tourmaline. International
Mineralogical Association Meeting Abstracts, 16, 321.
Rao, D. A. A. S. N. (1949) Dielectric constants of crystals, III.
Indian Academy of Science Proceedings, 30A, 82-86.
Rao, D. A. A. S. N. (1950) Dielectric constants and elastic moduli
of uniaxial crystals. Current Science (India) 19, 116.
Rozhkova, E. V. and Proskurovskii, L. V. (1957) Dielectric
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separation. Sovremennye Metody Mineralogicheskogo Issledovaniya
Gornykh Porod. Rud i Mineralov, pp.115-138.
E. B., Spichak, V. V. Ninth workshop on Electromagnetic induction
in the Earth and Moon. Abstracts Workshop on Electromagnetic
Induction in the Earth and Moon. 9. p.101
Waesche, H. H. (1949) Importance and application of piezoelectric
minerals. Mining and Engineering, 1, 12-16.
Yamaguchi, S. (1964a) Electron diffraction of a pyroelectric
tourmaline crystal. Journal of Applied Physics, 35, 1654-1655.
Yamaguchi, S. (1964b) Electron diffraction of a pyroelectric
tourmaline crystal. Naturwissenschaften, 51, 55.
Yamaguchi, S. (1983) Surface electric fields of tourmaline.
Applied Physics, A-31, 183-185.
Fracture
Kirby, S. H., Hemingway, B. S. and Lee, R. W. (1990) Anomalous
fracture and thermal behavior of hydrous minerals. in Duba, A. G.,
Durham, W. B., Handin, J. W. and Wang, H. F. The Brittle-ductile
transition in rocks. Geophysical Monograph, 56, 119-126.
Hardness
Ivanova, T. N. (1981) Microhardness of minerals of the tourmaline
group. Diagnostika i Diagnosticheskie Svoistva Mineralov
Proceedings, pp.237-239. (Russian)
Luminescence
Calderon, T. (1987) Factores que afectan in termolurninescencia en
turmalinas: Elbaita. Boletin de Ia Sociedad Espanola de
Mineralogia, 10, 191-197
Calderon Garcia, T. and Coy-Yll, R. (1982) Thermoluminescence in
elbaite. Journal of Gemmology, 18, 217-221.
Jain, V. K. and Mitra, 5. (1977) Thermoluminescence studies on
some silicate minerals. Thermochimiac Acta, 18, 241-244.
Morphology
de Camargo, W. G. R. and Souza, I. M. (1970) Novo Habito da
Turmalina. Academia Brasileira de Ciencais Anais (Rio de Janeiro),
42, 219-222.
Gaines, R. V. and Thadeu, D. (1971) The minerals of Panasqueira,
Portugal. Mineralogical Record, 2, 73-78.
Heinrich, E. W. (1963) Notes on western mineral occurrences.
American Mineralogist, 48, 1172-1174.
Kuz'min V. I., Solntseva L. S., Konev A. S. (1976) Tipomorfnye
osobennosti turmalina. Translated title: typomorphic features of
tourmaline. In Novoe v mineralogicheskih issledovanijah. M., p.
41-43 (in Russian).
Rowley, E. B. (1942) Huge tourmaline crystals discovered.
Mineralogist, 10,47-48, 63-64.
Rub, A. K. (1973) Silicates. Typomorphism of topaz and tourmaline,
characteristic accessory minerals of tantalum and tin ore
mmeralizations (as illustrated by a region in the eastern
U.S.S.R.). Tipomorphism Mineralov i Ego Prakticheskoe Znachenie,
pp.178-185.
Solly, R. H. (1884) On the tetartohedral development of crystal of
tourmaline, Mineralogical Magazine, 6, 80-82.
Termier, P. (1907) Large tourmaline crystals from Ankaratra.
Bulletin de la Societe Fraucaise de Mineralogie, 31, 138-142.
Williams, E. H., Jr. (1876) On crystals of tourmaline with
enveloped orthoclase. American Journal of Science, 11, 274-275.
Wooster, W. A. (1976) Etch figures and crystal structures.
Kristall und Technik, 11, 615-623.
Surface properties
Houchin, M. R. (1986) Surface studies of aqueous suspensions of
tourmaline (Dravite). Colloids and Surfaces, 19, 67-82.
Nakamura, T. and Kubo, T. (1992) Tourmaline group crystals
reaction with water. Ferroelectrics, 137,1-4.
Nishi, Y., Yazawa, A., Oguri, K., Kanazaki, F. and Kaneko, T.
(1996) pH self-controlling induced by tourmaline. Journal of
Intelligent Material Systems and Structures, 7, 260-263.
Yamaguchi, S. (1983) Tourmaline as a gas-chromatographic sensor.
Materials Chemistry and Physics, 8, 493-498.
Thermal properties
Horai, K. (1971) Thermal conductivity of rock forming minerals.
Journal of Geophysical Research, 76, 1278-1308.
Kurylenko, C. (1950) Analyse thermique de quelques tourmalines.
Bulletin de la Societe Francaise de Mineralogie et de
Cristallographie, 73, 49-54.
Lawless, W. N. and Pandey, R. K. (1984) Glasslike thermal
conductivity of tourmaline at low temperatures. Solid State
Communications, 52, 833-835.
Darrell Henry is the Campanile Charities Professor of Geology and
Geophysics at Louisiana State University whose research specialty
is metamorphic petrology. Further details of his professional
background are included in an accompanying vita or faculty
profile.
To contact Darrell Henry call (225)-578-2693, fax (225)-578-2302
or e-mail dhenry@geol.lsu.edu . Address: Department of Geology and
Geophysics, Louisiana State University, Baton Rouge, LA 70803.