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GEOPHYSICS

Tomography and crustal structure

Abgarmi, B., Delph, J.R., Ozacar, A.A., Beck, S.L., Zandt, G., Sandvol, E., Turkelli, N., and Biryol,C.B., 2017, Structure of the crust and African slab beneath the Central Anatolian Plateau fromreceiver functions: New insights on isostatic compensation and slab dynamics: Geosphere

Angus, D.A., Wilson, D.C., Sandvol, E., and Ni, J.F., 2006, Lithospheric structure of the Arabianand Eurasian collision zone in eastern Turkey from S-wave receiver functions: GeophysicalJournal International, v. 166, no. 3, p. 1335–1346.

Bakırcı, T., Yoshizawa, K., and Ozer, M.F., 2012, Three-dimensional S-wave structure of the uppermantle beneath Turkey from surface wave tomography: Geophysical Journal International,v. 190, p. 1058–1076.

Biryol, C.B., Beck, S.L., Zandt, G., Özacar, A.A., 2011, Segmented African lithosphere beneath the Anatolian region inferredfrom teleseismic P-wave tomography. Geophysical Journal International, 184, 1037–1057. ep

Delph, J.R., Biryol, C.B., Beck, S.L., Zandt, G., Ward, K.M., 2015, Shear wave velocity structure of the Anatolian Plate: anomalouslyslow crust in southwestern Turkey. Geophys. J. Int., 202, 261–276.

Delph, J.R., Zandt, G., and Beck, S.L., 2015, A new approach to obtaining a 3D shear-wavevelocity model of the crust and upper mantle: An application to eastern Turkey: Tectonophysics,v. 665, p. 92–100.

Delph, J.R., Abgarmi, B., Ward, K.M., Beck, S.L., Özacar, A.A., Zandt, G., Sandvol, E., Türkelli, N., and Kalafat, D., 2017, The effects of subduction termination on the continentallithosphere: Linking volcanism, deformation, surface uplift,and slab tearing in central Anatolia.Geosphere, 13, 1788-1805.

Fichtner, A., Saygin, E., Taymaz, T., Cupillard, P., Capdeville, Y., and Trampert, J., 2013, The deepstructure of the North Anatolian fault zone: Earth and Planetary Science Letters, v. 373,p. 109–117. e

Gans, C.R., Beck, S.L., Zandt, G., Biryol, C.B., and Ozacar, A.A., 2009, detecting the limit of slabbreak-off in central Turkey: New high-resolution Pn tomography results: Geophysical JournalInternational, v. 179, p. 1566–1572. e

Gök, R., Sandvol, E., Türkelli, N., Seber, D., and Barazangi, M., 2003, Sn attenuation in the Anatolianand Iranian plateau and surrounding regions: Geophysical Research Letters, v. 30, p. 1–13.

Gök, R., Pasyanos, M.E., and Zor, E., 2007, Lithospheric structure of the continent–continent collision zone:eastern Turkey. Geophys. J. Int. (2007) 169, 1079–1088. e

Govers, R., and Fichtner, A., 2016, Signature of slab fragmentation beneath Anatolia fromfull-waveform tomography, 2016: Earth and Planetary Science Letters, v. 450, p. 10–19. ep

Kind, R., Eken, T., Tilmann, F., Sodoudi, F., Taymaz, T., Bulut, F., Yuan, X., Can, B., and Schneider, F.,2015, Thickness of the lithosphere beneath Turkey and surroundings from S-receiver functions:Solid Earth, v. 6, p. 971–984. e

Özacar, A.A., Zandt, G., Gilbert, H., and Beck, S.L., 2010, Seismic images of crustal variationsbeneath the East Anatolian plateau (Turkey) from teleseismic receiver functions, in Sosson,M., et al., eds., Sedimentary Basin Tectonics From the Black Sea and Caucasus to the ArabianPlatform: Geological Society of London Special Publication 340, p. 485–496.

Paul, A., Karabulut, H., Mutlu, A.K., and Salaün, G., 2014, A comprehensive and densely sampledmap of shear-wave azimuthal anisotropy in the Aegean-Anatolia region: Earth and PlanetaryScience Letters, v. 389, p. 14–22. e

Piromallo, C., and Morelli, A., 2003, P wave tomography of the mantle under the Alpine-Mediterraneanarea: Journal of Geophysical Research. Solid Earth, v. 108, no. B2, p. 1–23,

Salaün, G., Pedersen, H.A., Paul, A., Farra, V., Karabulut, H., Hatzfeld, D., Papazachos, C., Childs,D.M., Pequegnat, C., and SIMBAAD Team, 2012, High-resolution surface wave tomographybeneath the Aegean-Anatolia region: Constraints on upper-mantle structure: GeophysicalJournal International, v. 190, p. 406–420.

Spakman, W., van der Lee, S., and van der Hilst, R., 1993, Travel-time tomography of the European-Mediterranean mantle down to 1400 km: Physics of the Earth and Planetary Interiors,v. 79, no. 1–2, p. 3–74.

Vanacore, E.A., Taymaz, T., and Saygin, E., 2013, MOHO structure of the Anatolian plate from receiver function analysis: Geophysical Journal International, v. 193, p. 329–337. e

Warren, M.L., Beck, S.L., Biryol, C.B., Zandt, G., Ozacar, A.A., and Yang, Y., 2013, Crustal velocitystructure of Central and Eastern Turkey from ambient noise tomography: Geophysical JournalInternational, v. 194, p. 1941–1954.

Rejyonal Jeofizik verileri

Akdoğan, N, 2000, Türkiye’nin magnetik-gravimetrik çizgisellikleryle Neo-Tetis paleotektonik üniteleri çizgiselliklerinin korelasyonu ve bazı sonuçlar. . Cumhuriyetin 75. Yıldönümü Yerbilimleri ve Madencilik Kongresi, MTA – Ankara, 2000, 331-347. p

Anonim, 1986, Türkiye birinci jeotravers paneli. TÜBİTAK, 50 p.p

Ates, A., Kearey, P., Tufan, S., 1999, New gravity and magnetic anomaly maps of Turkey. Geophysıcal Journal Internatıonal, 136, 499-502. e

Ateş, A., Kearey, P., Tufan, S., 1999, New gravity and magnetic anomaly maps of Turkey. Geophys. J. Int., 136, 499-502. p

Ateş, A., Sevinç, A., Kadıoğlu, Y.K., and Kearey, P., 1996, Geophysical investigations of the deep structure of the Aydın-Milas region, southwest Turkey: a possible extension of the Hellenic arc. Israel J. Earth Sciences, 46, 29-40.

Ateş, A., Sevinç, A., Kadıoğlu, Y.K., Kearey, P., 1997, Geophysical investigations of the deep structure of the Aydın-Milas region, southwest Turkey: Evidence for the possible extension of the Hellenic Arc. Isr. Earth Sci., 46, 29-40. p

Bayrak, M., and Nalbant, S.S., 2001, Conductive crust imaged in western Turkey by MT. Geophys. Res. Lett., 28, 3521-3524. p

Bayrak, M., İlkışık, O.M., Kaya, C. Başokur, A.T., 2001, Magnetotelluric data in western Turkey: dimensionality analysis using Mohr circles. J Geophys. Res., 105, 23 391-23 401. P

Biryol, C.B., Beck, S.L., Zandt, G., Özacar, A.A., 2011, Segmented African lithosphere beneath the Anatolian region inferredfrom teleseismic P-wave tomography.Geophys. J. Int. (2011) 184, 1037–1057. e

Canıtez, N., 1962, Gravite anomalileri ve sismolojiye göre Kuzey Anadoluda arz kabuğunun yapısı. Doktora Tezi, İTÜ Maden Fakültesi Yayını, 87 sayfa. p

Canıtez, N., 1969, Türkiye ve civarında deprem odak hareketleri ve gerilme dağılımları. İTÜ Maden Fakültesi yayını, 114 sayfa. p

Çağlar, I., 2001, Electric resistivity structure of the northwestern Anatolia and its tectonic implications for the Sakarya and Bornova zones. Physics Earth Planet. Interiors, 125, 95-110. p

Çavşak, H., Jacoby, W.R., Şeren, A., 2002, Eastern Pontides and Black Sea: gravity inversion, crustal structure, isostasy and geodynamics. J. Geodynamics, 33, 201,218. p

Delph, J.R., Biryol, C.B., Beck, S.L., Zandt, G., Ward, K.M., 2015, Shear wave velocity structure of the Anatolian Plate: anomalouslyslow crust in southwestern Turkey.Geophys. J. Int., 202, 261–276.

Ergin, K., 198, Jeofiziğin verilerine göre yerkabuğunun ve üst mantonun yapısı. İstanbul Yerbilimleri, , 283-295. p

Gürer, A., 1996, Deep conductivity structure of the North Anatolian Fault Zone and the Istanbul and Sakarya zones along the Gölpazarı-Akçakoca profile, northwest Anatolia. International Geology Review, 38, 727-736. p

Gürer, A., Bayrak, M., Gürer, Ö.F., 2004, Magnetotelluric images of the crust and mantle in the southwestern Taurides, Turkey. Tectonophysics, 391, 109-120. p

İlkışık, M., 1981, Manyetotelürik yöntemle Trakya'da yerkabuğunun araştırılması. İstanbul Yerbilimleri, , 307-319. p

İlkışık, O. M., 1990, Kuzey-kuzeybatı Anadolu'nun derin özdirenç yapısı. Doga - Tr. J. Eng. Env. Sc., 14, 598-617. p

İlkışık, O.M., 1995, Regional heat flow in western Anatolia using silica temperatures estimates from thermal springs. Tectonophysics, 244, 175-184.

Kahraman, M., Cornwell, D.G., Thompson, D.A., Rost, S., Houseman, G.A., Türkelli, N., Teoman, U., Poyraz, S.A., Utkucu, M., Gülen, L., 2015, Crustal-scale shear zones and heterogeneous structure beneaththe North Anatolian Fault Zone, Turkey, revealed by a high-densityseismometer array.Earth and Planetary Science Letters 430, 129–139. pe

Frederiksen, A.W., Thompson, D.A., Rost, S., Cornwell,D.G., Gülen, L., D.G., Houseman, G.A.,Kahraman, M.,Poyraz, S.A.,Teoman, U.M., Türkelli, N.,Utkucu, M., 2015, Crustal thickness variations and isostatic disequilibriumacross the North Anatolian Fault, western Turkey. Geophys. Res. Lett., 42, 751–757.

Kavlakoğlu, S., Erden, F., ve Özakçay, R., 1975, Ankara bölgesinin magnetik ve gravite anomali-trentleri bunların jeotermal akiferleri kontrol eden tektonizmayla ilişkileri. Cumhuriyetin 50. Yılı Kongresi Bildirileri, 312-334. p

Özelçi, F., 1973, Gravity anomalies of the Eastern Mediterranean. MTA Bült., 80, 54-92.

Tank, S.B., Honkura, Y., Ogawa, Y., Matsushima, M., Oshiman, N., Tunçer, N.K., Çelik, C., Tolak, E., Işıkara, A.M., 2005, Magnetotelluric imaging of the fault rupture areaof the 1999 İzmit (Turkey) earthquake. Physics of the Earth and Planetary Interiors 150, 213–225.

Taymaz, T. 1993, the source parameters of the Çubukdağ (W. Turkey) earthquake of 1986 October 11. Geophys. J. Int., 113, 260-267. p

Taymaz, T., and Price, S., 1992, The 1971 May 12 Burdur earthquake sequence, SW Turkey: a synthesis of seismological and geological observations. Geophys. J. Int., 108, 589-603. p

Taymaz, T., Eyidoğan, H. and Jackson, J., 1991, Source parameters of large earthquakes in the East Anatolian fault Zone (Turkey). Geophys. J. Int., 106, 537-550. p