참고문헌
- 김서운, 1973, 한반도 남동단부(방어진-포항) 해안 에 발달하는 단구에 관한 연구, 지질학회지, 9(2), 89-121.
- 김종욱.장호완.최정헌.최광희.변종민, 2005, 포항 북부 흥해읍 일대의 해안단구 지형 특성과 단구 퇴적물 연대, 한국지형학회지, 12(1), 103-116.
- 김종욱.장호완.최정헌.최광희.변종민, 2007, 울진 후정-죽변 일대의 해안단구 퇴적물에 대한 OSL 연대측정, 한국지형학회지, 14(1), 15-28.
- 박명호.김지훈.최성자.길영우.송윤구, 2007, 포항 용한리 지역의 퇴적지층에 대한 절대연대 측정 및 지화학 분석, 지질학회지, 43(1), 55-64.
- 신재열, 2012, 호주 남동부 Otway 해안의 후기 신제3기 및 제4기 융기 운동(I): 제4기 해안단구 발달 및 지층서, 한국지구과학회지, 33(6), 519-533. https://doi.org/10.5467/JKESS.2012.33.6.519
- 신재열, 2015, 해안단구 연구를 위한 10Be 연대측정법의 적용과 한계점, 한국지구과학회지, 36(6), 512-519. https://doi.org/10.5467/JKESS.2015.36.6.512
- 엄상호.이동우.박봉순, 1964, 한국지질도(1:50,000) 포항도폭 설명서, 국립지질조사소.
- 이호일.백인성.강희철.천종화, 2013, 경북 경주시 양남면에 분포하는 제2 해안단구 퇴적층의 산상 및 형성과정, 지질학회지, 49(4), 417-436.
- 윤순옥.황상일.정석교, 2002, 삼척 오십천 중.하류부의 하안단구 지형발달, 대한지리학회지, 37(3), 222-236.
- 윤순옥.황상일.반학균, 2003, 한반도 중부 동해안 정동진, 대진지역의 해안단구 지형발달, 대한지리학회지, 38(2), 156-172.
- 최성자, 2003, 진하-일광 지역의 해안단구, 자원환경지질, 36(3), 233-242.
- 최성자, 2004, 대보-구룡포-감포 지역의 해안단구 (II), 자원환경지질, 37(2), 245-253.
- 최성길, 1993, 한국 동해안에 있어서 최종간빙기의 구정선고도 연구: 후기 갱신세 하성단구의 지형층후적 대비의 관점에서, 대한지리학회지, 7(1), 1-26.
- 최성길, 1995, 한반도 중부동해안 저위해성단구의 대비와 편년, 대한지리학회지, 30(2), 103-109.
- 최성길, 1996, 한국 남동부해안 포항 주변지역 후기갱신세 해성단구의 대비와 편년, 한국지형학회지, 3(1), 29-44.
- 최성길.장호.김주용, 2003, 한반도 남동부해안 고위해성단구의 신분류 시안, 한국지형학회지, 10(1), 93-98.
- 최정헌.정창식.장호완, 2004, 석영을 이용한 OSL (Optically Stimulated Luminescence) 연대측정의 원리와 지질학적 적용, 지질학회지, 40(4), 567-583.
- 황상일.신재열.윤순옥, 2012, 한반도 남동부 경주시 수제리-수렴리의 해안단구와 제4기 환경변화, 한국지형학회지, 19(3), 97-108.
- Aitken, M. J., 1998, An Introduction to Optical Dating: The Dating of Quaternary Sediments by the Use of Photon-stimulated Luminescence, Oxford University Press, Oxford.
- Bard, E., Hamelin, B., and Fairbanks, R. G., 1990, U-Th ages obtained by mass spectrometry in corals from Barbados: sea level during the past 130,000 years, Nature, 346, 456-458. https://doi.org/10.1038/346456a0
- Buscombe, D. and Masselink, G., 2006, Concepts in gravelbeach dynamics. Earth-Science Review, 79, 33-52. https://doi.org/10.1016/j.earscirev.2006.06.003
- Caputo, R., 2007, Sea-level curves: Perplexities of an end-user in morphotectonic applications, Global and Planetary Change, 57, 417-423. https://doi.org/10.1016/j.gloplacha.2007.03.003
- Choi, J. H., Kim, J. W., Murray, A. S., Hong, D. G., Chang, H. W., and Cheong, C. S., 2009, OSL dating of marine terrace sediments on the southeastern coast of Korea with implications for Quaternary tectonics, Quaternary International, 199, 3-14. https://doi.org/10.1016/j.quaint.2008.07.009
- Choi, J. H., Murray, A. S., Jain, M., Cheong, C. S., and Chang, H. W., 2003, Luminescence dating of well-sorted marine terrace sediments on the southeastern coast of Korea, Quaternary Science Reviews, 22, 407-421. https://doi.org/10.1016/S0277-3791(02)00136-1
- Hearty, P. J., Hollin, J. T., Neumann, C., O'Leary, M. J., and McCulloch, M., 2007, Global sea level fluctuations during the Last Interglaciation (MIS 5e). Quaternary Science Reviews, 26, 2090-2112. https://doi.org/10.1016/j.quascirev.2007.06.019
- Hemleben,Ch., Meischner,D., Zahn,R., Almogi-Labin, A., Erlenkeuser, H., and Hiller, B., 1996, Three hundred eighty thousand year long stable isotope and faunal records from the Red Sea: influence of global sea level change on hydrography, Paleoceanography, 11 (2), 147-156. https://doi.org/10.1029/95PA03838
- Labeyrie, L. D., Duplessy, J. C., and Blanc, P. L., 1987, Variations in mode of formation and temperature of oceanic deep waters over the past 125,000 years, Nature, 327, 477-481. https://doi.org/10.1038/327477a0
- Lambeck, K. and Chappell, J., 2001, Sea level change through the Last Glacial cycle, Science, 292, 679-686. https://doi.org/10.1126/science.1059549
- Lee, D. Y., 1987, Stratigraphical research of the Quaternary deposits in the Korean peninsula, The Korean Journal of Quaternary Research, 1(1), 3-20.
- Ludwig, K. R., Muhs, D. R., Simmons, K. R., Halley, R. B., and Shinn, E. A., 1996, Sealevel records at -80 ka from tectonically stable platforms: Florida and Bermuda, Geology, 24, 211-214. https://doi.org/10.1130/0091-7613(1996)024<0211:SLRAKF>2.3.CO;2
- Muhs, D. R., Simmons, K. R., and Steinke, B., 2002, Timing and warmth of the Last Interglacial period: new U-series evidence from Hawaii and Bermuda and a new fossil compilation for North America, Quaternary Science Reviews, 21, 1355-1383. https://doi.org/10.1016/S0277-3791(01)00114-7
- Murray-Wallace, C. V., Ferland, M. A., and Roy, P. S., 2005, Further amino acid racemisation evidence for glacial age, multiple lowstand deposition on the New South Wales outer continental shelf, southeastern Australia, Marine Geology, 214, 235-250. https://doi.org/10.1016/j.margeo.2004.10.032
- Neumann, A. C. and Macintyre, I. G., 1985, Reef response to sea level rise: keep-up, catch-up or give-up, Proceedings of the Fifth International Coral Reef Congress, 3, 105-110.
- Oh, G. H., 1981, Marine terraces and their tectonic deformation on the coast of the southern part of the Korean Peninsula, Bull. Dept. Geography, Univ. of Tokyo, 13, 1-16.
- Ota, Y. and Omura, O., 1992, Contrasting styles and rates of tectonic uplift of coral reef terraces in the Ryukyu and Daito Islands, southwestern Japan, Quaternary International, 15/16, 17-29. https://doi.org/10.1016/1040-6182(92)90033-X
- Richards, D. A., Smart, P. L., and Edwards, R. L., 1994, Maximum sea levels for the last glacial period from U-series ages of submerged speleothems, Nature, 367, 357-360. https://doi.org/10.1038/367357a0
- Shin, J., 2013, Stratigraphy and geochronology of Quaternary marine terraces of Tasmania, Southeastern Australia: implications on neotectonism, Geosciences Journal, 17(4), 429-443. https://doi.org/10.1007/s12303-013-0046-7
- Siddall, M., Rohling, E. J., Almogi-Labin,A., Hemleben,Ch., Melschner, D., Schmelzer, I., and Smeed, D. A., 2003, Sea-level fluctuations during the last glacial cycle, Nature, 423, 853-858. https://doi.org/10.1038/nature01690
- Stirling, C. H., Esat, T. M., Lambeck, K., and McCulloch, M. T., 1998, Timing and duration of the Last Interglacial: evidence for a restricted interval of widespread coral reef growth, Earth and Planetary Science Letters, 160, 745-762. https://doi.org/10.1016/S0012-821X(98)00125-3