Peculiarities of Rayleigh wave displacement in a transversely isotropic half space

S. N. Bhattacharya1
1Lithosphere Study Centre, 23 B, Nivedita Enclave, A6 Paschim Vihar, New Delhi, 110063, India

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Abubakar I, Hudson JA (1961) Dispersive properties of liquid overlying an aeolotropic half space. Geophys J 5:217–229

Alkhalifah T, Tsvankin I (1995) Velocity analysis for transversely isotropic media. Geophysics 60:1550–1566. https://doi.org/10.1190/1.1443888

Anderson DL (1961) Elastic wave propagation in layered anisotropic media. J Geophys Res 66:2953–2963

Anderson DL (1965) Recent evidence concerning the structure and composition of the Earth’s mantle, in Physics and chemistry of the earth, vol Vol. 6. Pergamum Press, Oxford, pp 1–131

Beghein C, Trampert J, van Heijst HJ (2006) Radial anisotropy in seismic reference models of the mantle. J Geophys Res 111:B02303. https://doi.org/10.1029/2005JB003728.

Bhattacharya SN (2017a) Limits of transversely isotropic elastic parameters for the existence of classical Rayleigh waves. J Seismol 21:237–241. https://doi.org/10.1007/s10950-016-9565-9

Bhattacharya SN (2017b) Rayleigh wave dispersion equation with real terms in a layered transversely isotropic half space. Ann Geophys 60(6):SE670. https://doi.org/10.4401/ag-7444

Biot MA (1952) The interaction of Rayleigh and Stoneley waves in the ocean bottom. Bull Seismol Soc Am 42:81–93

Chadwick P (1976) The existence of pure surface modes in elastic materials with orthorhombic symmetry. J Sound Vib 47:39–52

Chadwick P (1989) Wave propagation in transversely isotropic elastic media. I. Homogeneous plane waves. Proc R Soc Lond A 422:23–66

Ewing WM, Jardetzky WS, Press F (1957) Elastic waves in layered media. McGraw-Hill Book Co. Inc., New York

Kugler S, Bohlen T, Forbriger T, Bussat S, Klein G (2007) Scholte-wave tomography for shallow-water marine sediments. Geophys J Int 168:551–570

Love AEH (1927) A treatise on the mathematical theory of elasticity. Cambridge Univ. Press, Cambridge

Moschetti MP, Ritzwoller MH, Lin F, Yang Y (2010) Seismic evidence for widespread western-US deep-crustal deformation caused by extension. Nature 464:885–889

Nguyen XN, Dahm T, Grevemeyer I (2009) Inversion of Scholte wave dispersion and waveform modelling for shallow structure of the Ninety East Ridge. J Seismol 13:543–559, 2009

Nishimura CE, Forsyth DW (1989) The anisotropic structure of the upper mantle in the Pacific. Geophys J R Astro Soc 96:203–229

Ricketts TE (1974) Generalized Rayleigh wave propagation in anisotropic rock. Int J Rock Mech Min Sci Geomech Abstracts 11:251–259

Socco VL, Boiro D, Maraschini M, Vanneste M, Madshus C, Westerdahl H, Duffaunt K, Skomedal E (2011) On the use of the Norwegian Geotechnical Institute’s prototype seabed-coupled shear wave vibrator for shallow soil characterization—II. Joint inversion of multimodal Love and Scholte surface wave. Geophys J Int 185:237–252. https://doi.org/10.1111/j.1365-246X.2011.04961.x

Stein S, Wysession M (2002) An introduction to seismology, earthquakes and earth structure, Blackwell Publishing, 2002

Stoneley P (1949) The seismological implications of aeolotropy in continental structure. Geophys Suppl Monthly Notices Royal Astro Soc 5:343–353

Stoneley P (1963) The propagation of surface waves in an elastic medium with orthorhombic symmetry. Geophysics 8:176–186

Takeuchi H, Saito M (1972) Seismic surface waves, methods in computational physics, Vol. 11. Academic Press, New York, pp 217–295

Thomsen L (1986) Weak elastic anisotropy. Geophysics 51:1954–1966. https://doi.org/10.1190/1.1443818

Vinh PC, Ogden RW (2004) Formulas for Rayleigh wave speed in orthotropic elastic solids. Arch Mech 56:247–265

Wang Y, Li Z, You Q, Hao T, Xing J, Liu L, Zhao C, Li X, Hu L, Somerville P (2016) Shear-wave velocity structure of the shallow sediments in the Bohai Sea from an ocean-bottom-seismometer survey. Geophysics 81:ID25–ID36. https://doi.org/10.1190/GEO2015-0417.1