Bibliographie
BANERJEE, S.K., KING, J., & MARVIN, J., 1981. A rapid methode
for magnetic granulometry with application to environmental studies.
Geophys. Res. Lett. 8 (4), 333-336.
BLOEMENDAL, J., KING J.W., HALL, F.R., & DOH, S.-H., 1992.
Rock magnetism of Late Neogene and Pleistocene deep-sea sediments: Relationship
to sediment source, diagenetic processes, and sediment lithology, Journal
of Geophysical Research, 97, 4361- 4375.
CHAMLEY, H., 1999. Base de sédimentologie. Ed
Dunod, 2ème edition, 178 p.
COLLOMBAT, H., 1993. Etude des propriétés des
sédiments non consolidés : anisotropie et erreurs d'inclinaison
paléomagnétique. Thèse de doctorat, Université
J. Fourier, Grenoble I, 214 p.
DEARING, J., DANN, R., HAY K., LEES J., LOVELAND, P., MAHER, B.,
& O'GRADY, K., 1996. Frequency-dependent susceptibility measurements of
environmental materials. Geophys. J. Int.
124, 228-240.
DENG, C., ZHU, R., VEROSUB, K.L., SINGER, M.J., & YUAN,
B.Y., 2000. Paleoclimatic
significance of the temperature-dependent susceptibility of
Holocene loess along a NW-SE transect in the Chinese loess plateau.
Geophysical Research Letters, Vol. 27, 22,
3715-3718.
DENG, C.L., ZHU, R.X., VEROSUB, K.L., SINGER, M.J. & VIDIC,
N.J., 2004. Mineral magnetic properties of loess/paleosol couplets of the
central loess plateau of China over the last 1.2 Myr, J. geophys. Res.,
109, B01103, doi: 10.1 029/2003JB002532.
DUNLOP, D.J., 1995. "Magnetism in rocks" (invited AGU 75th
Anniversary paper), J. Geophys. Res, 100,
2161-2174.
FLORINDO, F., ZHU, R.X., GUO, B., YUE, L.P., PAN, Y.X. &
SPERANZA, F., 1999. Magnetic proxy climate results from the Duanjiapo loess
section, southernmost extremity of the Chinese loess plateau, J. geophys.
Res., 104, 645-659.
FORSTER, T., EVANS, M.E., & HELLER, F., 1994. The frequency
dependence of low-field susceptibility in loess sediments, Geophys. J.
Int., 118, 636-642.
HARTSTRA, R.L., 1982. Grain-size dependence of initial
susceptibility and saturation magnetizationrelated parameters of four natural
magnetites in the PSD-MD range, Geophys. J. R. Astr. Soc.,
71, 477- 495.
HEIDER, F., ZITZELSBERGER A. & FABIAN, K. 1996. Magnetic
susceptibility and remanent coercive force in grown magnetic crystals from 0.1
ìm to 6 mm, Physics of the Earth and Planetary Interiors,
93, 239-256.
HUNT, C.P., SINGER, M.J., KLETETSCHKA, G., TEN PAS, J., &
VEROSUB, K.L., 1995. Effect of citrate bicarbonate-dithionite treatment on
finegrained magnetite and maghemite, Earth and Planetary Science
Letters, 130, 87-94.
KING, J., BANERJEE, S.K., MARVIN, J., & ÖZDEMIR,
Ö., 1982. A comparison of different magnetic methods for determining the
relative grain size of magnetite in natural materials : some results from lake
sediments. Earth Planet Sci Lett, 59, 404- 419.
KRUIVER, P.P., DEKKERS, M.J., & HESLOP, D., 2001.
Quantification of magnetic coercivity components by the analysis of acquisition
curves of isothermal remanent magnetisation. Earth Planet. Sci. Let.t,
189, 269-276.
KRUIVER, P.P., LANGEREIS, C.G., DEKKERS, M.J., & KRIJGSMAN,
W., 2003. Rock-magnetic properties of multi-component natural remanent
magnetisation in alluvial red beds (NE Spain). Geophys. J.
Int., 153, 3 17-332.
LANCI, L., HIRT, A.M., LOWRIE, W., LOTTER, A.F., LEMCKE, G.,
& STURM, M., 1999. Mineral-magnetic record of late quaternary climatic
changes in a high Alpine lake. Earth Planet. Sc. Lett.,
170, 49-59.
MAHER, B.A., 1988. Magnetic properties of some synthetic
submicron magnetites. Geophys. J., 94, 83-96.
MOONEY, S. D., Geiss, C., & Smith, M. A., 2002. The Use of
Mineral Magnetic Parameters to
Characterize Archaeological Ochres. Journal of Archaeological
Science, 30, 511-523.
MULLINS, C. E., 1973. Magnetic viscosity, quadrature
susceptibility, and frequency dependence of susceptibility in single-domain
assemblies of magnetite and maghemite. J. Geophys. Res.,
78 (5), 804-809.
NECULA, C., PANAIOTU, C., PANAIOTU, C.E., & GRAMA, A., 2005.
Magnetic properties of a loess-paleosol sequence at mostistea (romania).
Romanian Reports in Physics, vol., 57, 3, 453-461
ROBERTSON, D. J., & FRANCE, D. E., 1994. Discrimination of
remanence-carrying minerals in mixtures, using isothermal remanent
magnetization acquisition curves. Phys. Earth Planet. Inter.,
82, 223-234.
ROBINSON, S. G., 1986. The late Pleistocene palaeoclimatic record
of North Atlantic deep-sea sediments revealed by mineral-magnetic measurements.
Physics of the Earth and Planetary Interiors,
42, 22 - 47.
STOCKHAUSEN, H., 1998. Some new aspects for the modelling of
isothermal remanent magnetization acquisition curves by cumulative log Gaussian
functions. Geophys. Res. Lett., 25, 22 17- 2220.
STOCKHAUSEN, H., & ZOLITSCHKA, B., 1999. Environmental
changes since 13,000 cal. BP reflected in magnetic and sedimentological
properties of sediments from Lake Holzmaar (Germany). Quaternary Science
Reviews, 18, 913- 925.
SCHWERTMANN, U. & TAYLOR, R.M., 1989. Iron oxides, in,
Minerals in Soil Environments, 2nd edn, 379-438, eds Dixon, J.B. &
Weed, S.B., Soil Science Society of America, Madison, WI.
THOMPSON, R., 1986. Modelling magnetization data using SIMPLEX,
Phys. Earth Planet. Inter., 42, pp.1 13-127.
ZHU, R. X., LIN, M., & PAN, Y. X., 1999. History of the
temperature-dependence of susceptibility and its implications: Preliminary
results along an E-W transect of the Chinese Loess Plateau, Chinese Sci.
Bull., 44(supp.), 8 1-86.
ZHU, R. X., KAZANSKY, A., & MATASOVA, G. 2000. Rock-magnetic
investigation of Siberia loess and its implication, Chinese Sci.
Bull., 45 (23), 2192-2197.
|
|