Lab-tec™ 1000 User’s Manual, 85, 1992



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éel Symposium Volume, Phys. Earth Planet. Inter., 126 (1-2), 1, 2001.

Dunlop, D.J., Planetary science Magnetic impact craters, 435 (7039), 156-157, 2005.

Dunlop, D.J., The hunting of the psark, Adv. Earth Planet. Sci., 1, 61–86, 1977.

Dunlop, D.J., Magnetic properties of fine-particle hematite, Ann. Géophys., 27, 269–293, 1971.

Dunlop, D.J., Determination of domain structure in igneous rocks by alternating field and other methods, Earth Planet. Sci. Lett., 63, 353–367, 1983.

Dunlop, D.J., Coercive forces and coercivity spectra of submicron magnetites, Earth Planet. Sci. Lett., 78, 288–295, 1986.

Dunlop, D.J., Viscous remanent magnetization (VRM) and viscous remagnetization, in Encyclopedia of Solid Earth Geophysics, edited by D.E. James, pp. 1297–1303, Van Nostrand Reinhold, Stroudsburg, PA, 1989.

Dunlop, D.J., Partial transition warming remanence ("Inverse TRM"), Eos Trans. AGU, 82 (47, Fall Meet. Suppl.), Abstract GP32B-07, 2001.

Dunlop, D.J., New and old methods of magnetic granulometry, Eos Trans. AGU, 82 (47, Fall Meet. Suppl.), Abstract GP32B-01, 2001.

Dunlop, D.J., Magnetic mineralogy of unheated and heated red sediments by coercivity spectrum analysis, Geophys. J. R. Astr. Soc., 27, 37–55, 1972.

Dunlop, D.J., Viscous magnetization of 0.04-100 micron magnetites, Geophys. J. R. Astr. Soc., 74, 667-687, 1983.

Dunlop, D.J., On the demagnetizing energy and demagnetizing factor of a multidomain ferromagnetic cube, Geophys. Res. Lett., 10, 79–82, 1983.

Dunlop, D.J., Stepwise and continuous low-temperature demagnetization - art. no. 1582, Geophys. Res. Lett., 30 (11), 10, 2003.

Dunlop, D.J., Grain-size dependence of anhysteresis in iron oxide micropowders, IEEE Trans. Magn., MAG-8, 211–213, 1972.

Dunlop, D.J., Partial thermoremanent magnetization: Louis Neel's legacy in rock magnetism (invited), J. Appl. Phys., 93 (10 Part 3), 8236-8240, 2003.

Dunlop, D.J., The hunting of the "Psark", Journal of Geomag. Geoelectr., 29, 293-318, 1977.

Dunlop, D.J., Grain distributions in rocks containing single-domain grains, J. Geomagn. Geoelectr., 17, 459–471, 1965.

Dunlop, D.J., The hunting of the ‘psark’, J. Geomagn. Geoelectr., 29, 293–318, 1977.

Dunlop, D.J., Superparamagnetic and single-domain threshold sizes in magnetite, J. Geophys. Res., 78, 1780–1793, 1973.

Dunlop, D.J., Thermoremanent magnetization in submicroscopic magnetite, J. Geophys. Res., 78, 7602–7613, 1973.

Dunlop, D.J., Reply to “Comments on ‘Superparamagnetic and single-domain threshold sizes in magnetite’ by D. J. Dunlop” by C. Radhakrishnamurty, J. Geophys. Res., 79, 5537–5538, 1974.

Dunlop, D.J., Thermal fluctuation analysis: a new technique in rock magnetism, J. Geophys. Res., 81, 3511–3517, 1976.

Dunlop, D.J., Hysteresis properties of magnetite and their dependence of particle size: a test of pseudo-single-domain remanence models, J. Geophys. Res., 91 (B9), 9569-9584, 1986.

Dunlop, D.J., Thermoremanent magnetization of nonuniformly magnetized grains, J. Geophys. Res., 103 (B12), 30561-74, 1998.

Dunlop, D.J., Thermoremanent magnetization of non-uniformly magnetized grains, J. Geophys. Res., 103 (B12), 30,561-30.574, 1998.

Dunlop, D.J., Theory and application of the Day plot (Mrs/Ms versus Hcr/Hc). 2. Application to data for rocks, sediments, and soils, J. Geophys. Res., 107 (B3), doi:10.1029/2001JB000486, 2002.

Dunlop, D.J., Theory and application of the Day plot (Mrs/Ms versus Hcr/Hc). 1. Theoretical curves and tests using titanomagnetite data, J. Geophys. Res., 107 (B3), doi:10.1029/2001JB000487, 2002.

Dunlop, D.J., A method of determining demagnetizing factor from multidomain hysteresis, J. Geophys. Res. B, 89, 553–558, 1984.

Dunlop, D.J., Hysteresis properties of magnetite and their dependence on particle size: a test of pseudo-single-domain remanence models, J. Geophys. Res. B, 91, 9569–9584, 1986.

Dunlop, D.J., Magnetism in rocks, J. Geophys. Res. B, 100, 2161–2174, 1995.

Dunlop, D.J., Thermal enhancement of magnetic susceptibility, J. Geophys., 40, 4339–4351, 1974.

Dunlop, D.J., Viscous magnetization of 0.04–100 µm magnetites, in J. Geophys., pp. 667–687, 1983.

Dunlop, D.J., Temperature, time, and interaction effects in rock magnetism, J. Magn. Magn. Mater., 45, 107–112, 1984.

Dunlop, D.J., Planetary science - Magnetic impact craters, Nature, 435 (7039), 156-157, 2005.

Dunlop, D.J., Preisach diagrams and remanent properties of interacting monodomain grains, Phil. Mag., 19, 369–378, 1969.

Dunlop, D.J., Coercive force and remanence of monodomain grains with mixed crystalline and shape anisotropy, Phil. Mag., 21, 385–397, 1970.

Dunlop, D.J., Experimental test of the Preisach-Néel model of interacting single domain grains, Phys. Lett., 27, 617–618, 1968.

Dunlop, D.J., On the use of Zijderveld diagrams in multicomponent paleomagnetic studies, Phys. Earth Planet. Inter., 20, 12-24, 1979.

Dunlop, D.J., The rock magnetism of fine particles, Phys. Earth Planet. Inter., 26, 1–26, 1981.

Dunlop, D.J., Temperature dependence of hysteresis in 0.04–0.22 µm magnetites and implications for domain structure, Phys. Earth Planet. Inter., 46, 100–119, 1987.

Dunlop, D.J., Developments in rock magnetism, Rep. Prog. Phys., 53, 707–792, 1990.

Dunlop, D.J., Theory of magnetic viscosity of lunar and terrestrial rocks, Rev. Geophys. Space Phys., 11, 855–901, 1973.

Dunlop, D.J., and K.S. Argyle, Thermoremanence, anhysteretic remanence and susceptibility of submicron magnetites: Nonlinear field dependence and variation with grain size, J. Geophys. Res., 102 (B9), 20199-210, 1997.

Dunlop, D.J., and K.S. Argyle, Thermoremanence and anhysteretic remanence of small multidomain magnetites, J. Geophys. Res. B, 95, 4561–4577, 1990.

Dunlop, D.J., and K.S. Argyle, Separating multidomain and single-domain-like remanences in pseudo-single-domain magnetites (215–540 nm) by low-temperature demagnetization, J. Geophys. Res. B, 96, 2007–2017, 1991.

Dunlop, D.J., K.S. Argyle, and M.E. Bailey, High-temperature techniques for measuring microcoercivity, crystallite size, and domain state, Geophys. Res. Lett., 17 (6), 767–770, 1990.

Dunlop, D.J., and J. Arkani-Hamed, Magnetic minerals in the Martian crust, J Geophys Res-Planet, 110 (E12), 1-11, 2005.

Dunlop, D.J., and J. Arkani-Hamed, Magnetic minerals in the Martian crust - art. no. E12S04, J Geophys Res-Planet, 110 (E12), 1-11, 2005.

Dunlop, D.J., M.E. Bailey, and M.F. Westcott-Lewis, Lunar paleointensity determination using anhysteretic remanence (ARM): a critique, Geochim. Cosmochim. Acta, 3, Supplement 6 (Proceedings of the Sixth Lunar Science Conference), 3063–3069, 1975.

Dunlop, D.J., Z. Baoxing, and O. Ozdemir, Linear and nonlinear Thellier paleointensity behavior of natural minerals, J. Geophys. Res., 110 (B1), 0148-0227, 2005.

Dunlop, D.J., and M.-M. Bina, The coercive force spectrum of magnetite at high temperatures: evidence for thermal activation below the blocking temperature, Geophys. J. R. Astr. Soc., 51, 121–147, 1977.

Dunlop, D.J., R.J. Enkin, and E. Tjan, Internal field mapping in single-domain and multidomain grains, J. Geophys. Res. B, 95, 4561–4577, 1990.

Dunlop, D.J., J.A. Hanes, and K.L. Buchan, Indices of multidomain magnetic behavior in basic igneous rocks: alternating-field demagnetization, hysteresis, and oxide petrology, J. Geophys. Res., 78, 1387–1393, 1973.

Dunlop, D.J., and G. Kletetschka, Multidomain hematite: A source of planetary magnetic anomalies?, Geophys. Res. Lett., 28 (17), 3345-8, 2001.

Dunlop, D.J., A.J. Newell, and R.J. Enkin, Transdomain thermoremanent magnetization, J. Geophys. Res. B, 99, 19,741–19,755, 1994.

Dunlop, D.J., and I. Ozdemir, Effect of grain size and domain state on thermal demagnetization tails, Geophys. Res. Lett., 27 (9), 1311-14, 1999.

Dunlop, D.J., and O. Ozdemir, Effect of Grain Size and Domain State on Thermal Demagnetization Tails, Geophys. Res. Lett., 27 (9), 1311-1314, 2000.

Dunlop, D.J., and O. Ozdemir, Beyond Neel's theories: thermal demagnetization of narrow-band partial thermoremanent magnetizations, Phys. Earth Planet. Inter., 126 (1), 43-57, 2001.

Dunlop, D.J., and Ö. Özdemir, Rock Magnetism: Fundamentals and Frontiers, 573 pp., Cambridge University Press, Cambridge, 1997.

Dunlop, D.J., and Ö. Özdemir, Pushing hysteresis to the limit: crystals of mica measured with a MicroMag magnetometer (abstract), Eos Trans. Am. Geophys. Union, 73, no. 43 suppl., 139, 1992.

Dunlop, D.J., and Ö. Özdemir, TRM, ARM, IRM, and hysteresis of a large single crystal of magnetite (abstract), Eos Trans. Am. Geophys. Union, 73, no. 14 suppl., 94, 1992.

Dunlop, D.J., and Ö. Özdemir, Thermal and low-temperature demagnetization of thermoviscous overprints carried by multidomain magnetite (abstr.), Eos Trans. Am. Geophys. Union, 76, suppl., F160, 1995.

Dunlop, D.J., and Ö. Özdemir, Thermal demagnetization of VRM and pTRM of single domain magnetite: no evidence for anomalously high unblocking temperatures, Geophys. Res. Lett., 20, 1939–1942, 1993.

Dunlop, D.J., and Ö. Özdemir, Effect of grain size and domain state on thermal demagnetization tails, Geophys. Res. Lett., 27 (9), 1311-14, 1999.

Dunlop, D.J., and Ö. Özdemir, Effect of Grain Size and Domain State on Thermal Demagnetization Tails, Geophys. Res. Lett., 27 (9), 1311-1314, 2000.

Dunlop, D.J., and Ö. Özdemir, Alternating field stability of high-temperature viscous remanent magnetization, Phys. Earth Planet. Inter., 65, 188–196, 1990.

Dunlop, D.J., and Ö. Özdemir, Beyond Néel's theories: thermal demagnetization of narrow-band partial thermoremanent magnetizations, Phys. Earth Planet. Inter., 126 (1-2), 43-57, 2001.

Dunlop, D.J., O. Ozdemir, D.A. Clark, and P.W. Schmidt, Time-temperature relations for the remagnetization of pyrrhotite (Fe7S8) and their use in estimating paleotemperatures, Earth Planet. Sci. Lett., 176 (1), 107-16, 2000.

Dunlop, D.J., Ö. Özdemir, D.A. Clark, and P.W. Schmidt, Time-temperature relations for the remagnetization of pyrrhotite (Fe7S8) and their use in estimating paleotemperatures, Earth Planet. Sci. Lett., 176 (1), 107-16, 2000.

Dunlop, D.J., Ö. Özdemir, and R.J. Enkin, Multidomain and single-domain relations between susceptibility and coercive force, Phys. Earth Planet. Inter., 49, 181–191, 1987.

Dunlop, D.J., Ö. Özdemir, and D.G. Rancourt, Magnetism of biotite crystals, Earth Planet. Sci. Lett., 243 (3-4), 805-819, 2006.

Dunlop, D.J., O. Ozdemir, and P.W. Schmidt, Paleomagnetism and paleothermometry of the Sydney Basin. 2. Origin of anomalously high unblocking temperatures, J. Geophys. Res., 102 (B12), 27285-95, 1997.

Dunlop, D.J., Ö. Özdemir, and P.W. Schmidt, Paleomagnetism and paleothermometry of the Sydney Basin. 2. Origin of anomalously high unblocking temperatures, J. Geophys. Res., 102 (B12), 27285-95, 1997.

Dunlop, D.J., and M. Prévot, Magnetic properties and opaque mineralogy of drilled submarine intrusive rocks, Geophys. J. R. Astr. Soc., 69, 763–802, 1982.

Dunlop, D.J., B. Reid, and H. Hyodo, Alteration of the coercivity spectrum and paleointensity determination, Geophys. Res. Lett., 14, 1091–1094, 1987.

Dunlop, D.J., P.W. Schmidt, O. Ozdemir, and D.A. Clark, Paleomagnetism and paleothermometry of the Sydney Basin. 1. Thermoviscous and chemical overprinting of the Milton Monzonite, J. Geophys. Res., 102 (B12), 27271-83, 1997.

Dunlop, D.J., P.W. Schmidt, Ö. Özdemir, and D.A. Clark, Paleomagnetism and paleothermometry of the Sydney Basin. 1. Thermoviscous and chemical overprinting of the Milton Monzonite, J. Geophys. Res., 102 (B12), 27271-83, 1997.

Dunlop, D.J., F.D. Stacey, and D.E.W. Gillingham, The origin of thermoremanent magnetization: contribution of pseudo-single-domain magnetic moments, Earth Planet. Sci. Lett., 21, 288–294, 1974.

Dunlop, D.J., and J.M. Stirling, ‘Hard’ viscous remanent magnetization (VRM) in fine-grained hematite, Geophys. Res. Lett., 4, 163–166, 1977.

Dunlop, D.J., and E.D. Waddington, The field dependence of thermoremanent magnetization in igneous rocks, Earth Planet. Sci. Lett., 25, 11–25, 1975.

Dunlop, D.J., and G. West, An experimental evaluation of single-domain theories, Rev. Geophys., 7, 709–757, 1969.

Dunlop, D.J., M.F. Westcott-Lewis, and M.E. Bailey, Preisach diagrams and anhysteresis: do they measure interactions?, Phys. Earth Planet. Inter., 65, 62–77, 1990.

Dunlop, D.J., and S. Xu, Theory of partial thermoremanent magnetization in multidomain grains: 1. Repeated identical barriers to wall motion (single microcoercivity), J. Geophys. Res. B, 99, 9005–9023, 1994.

Dunlop, D.J., and S. Xu, Theory of partial thermoremanent magnetization in multidomain grains: 2. Effect of microcoercivity distribution and comparison with experiment, J. Geophys. Res. B, 99, 9025–9033, 1994.

Dunlop, D.J., S. Xu, Ö. Özdemir, D. AlMawlawi, and M. Moskovits, Magnetic properties of arrays of oriented iron particles as a function of particle size, shape, and spacing, Phys. Earth Planet. Inter., 76, 113–121, 1993.

Dunlop, D.J., S. Xu, Ö. Özdemir, D. AlMawlawi, and M. Moskovits, Magnetic properties of arrays of iron particles as a function of particle size, shape and spacing, Phys. Earth Planet. Inter., 76, 113-121, 1993.

Dunlop, D.J., B.X. Zhang, and Ö. Özdemir, Linear and nonlinear Thellier paleointensity behavior of natural minerals - art. no. B01103, J Geophys Res-Sol Ea, 110 (B1), 2005.

Dunn, D.S., M.B. Bogart, C.S. Brossia, and G.A. Cragnolino, Corrosion of iron under alternating wet and dry conditions, Corrosion, 56 (5), 470-81, 2000.

Dunne, L.A., Fan-deltas and braid deltas - Varieties of coarse-grained deltas - discussion, Geol. Soc. Am. Bull., 100 (8), 1308, 1988.

Dunwiddie, P.W., and V.C. LaMarche, Jr., A climatically responsive tree-ring record from Widdringtonia cedarbergensis, Cape Province, South Africa, Nature, 286, 796–797, 1980.

Duong, N.P., T. Satoh, and M. Fiebig, Ultrafast manipulation of antiferromagnetism of NiO - art. no. 117402, Phys. Rev. Lett., 9311 (11), 7402, 2004.

Duplantier, J.G., L. Dubuisson, N. Senant, G. Freyburger, I. Laurendeau, J.M. Herbert, A. Desmouliere, and J. Rosenbaum, A role for thrombin in liver fibrosis, Gut, 53 (11), 1682-1687, 2004.

Duplessy, J.C., E. Bard, M. Arnold, N.J. Shackleton, J. Duprat, and L. Labeyrie, How fast did the ocean-atmosphere system run during the last deglaciation, Earth Planet. Sci. Lett., 103, 27-40, 1991.

Duplessy, J.-C., and N.J. Shackleton, Response of global deep-water circulation to earth's climatic change 135,000-107,000 years ago, Nature, 316, 500-507, 1985.

Dupont-Nivet, G., R.F. Butler, Y. An, and C. Xuanhua, Paleomagnetism indicates no Neogene vertical axis rotations of the northeastern Tibetan Plateau, J. Geophys. Res., 108 (B8), 1-19, 2003.

Dupont-Nivet, G., Z. Guo, R.F. Butler, and C. Jia, Discordant paleomagnetic direction in Miocene rocks from the central Tarim Basin: evidence for local deformation and inclination shallowing, Earth Planet. Sci. Lett., 193 (3-4), 473-82, 2002.

Dupont-Nivet, G., B.K. Horton, R.F. Butler, J. Wang, J. Zhou, and G.L. Waanders, Paleogene clockwise tectonic rotation of the Xining-Lanzhou region, northeastern Tibetan Plateau

me. Consistent with regional chronostratigraphic and thermochronologic results, this late Paleogene tectonic rotation confirms that deformation reached regions of the northern Tibetan Plateau shortly after the initial collision of India with Asia. When compared to rotational paleomagnetic results from adjacent regions, several mechanisms can be proposed to explain the clockwise rotation. On the basis of consistency with geologic data we prefer a model involving clockwise rotation of the Xining-Lanzhou region through right-lateral shear, and associated shortening, related to northward indentation of the Qaidam basin, J. Geophys. Res., 109 (B4), 0148-0227, 2004.

Dupont-Nivet, G., D. Robinson, R.F. Butler, A. Yin, and H.J. Melosh, Concentration of crustal displacement along a weak Altyn Tagh fault: evidence from paleomagnetism of the northern Tibetan Plateau, Tectonics, 23 (1), 0278-7407, 2004.

Dupont-Nivet, G., I. Vasiliev, C.G. Langereis, W. Krijgsman, and C. Panaiotu, Neogene tectonic evolution of the southern and eastern Carpathians constrained by paleomagnetism, Earth Planet. Sci. Lett., 236, 1-2, 2005.

Duraes, L., B.F.O. Costa, J. Vasques, J. Campos, and A. Portugal, Phase investigation of as-prepared iron oxide/hydroxide produced by sol-gel synthesis, Mater. Lett, 59 (7), 859-863, 2005.

Duran-Valle, C.J., M. Gomez-Corzo, J. Pastor-Villegas, and V. Gomez-Serrano, Study of cherry stones as raw material in preparation of carbonaceous adsorbents, J. Anal. Appl. Pyrolysis, 73 (1), 59-67, 2005.

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