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Basumatary, Pallabi; Prakash, Tribujjal; Chauhan, Hiredya; Gogoi, Bibhuti (2026) Tracing magma genesis and post-emplacement processes of aplites in the Mikir Massif, Northeast India: implementing fractal dimension and lacunarity analyses to decode textural heterogeneity. International Journal of Earth Sciences, 115 (1). doi:10.1007/s00531-026-02558-x

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Reference TypeJournal (article/letter/editorial)
TitleTracing magma genesis and post-emplacement processes of aplites in the Mikir Massif, Northeast India: implementing fractal dimension and lacunarity analyses to decode textural heterogeneity
JournalInternational Journal of Earth Sciences
AuthorsBasumatary, PallabiAuthor
Prakash, TribujjalAuthor
Chauhan, HiredyaAuthor
Gogoi, BibhutiAuthor
Year2026 (February)Volume115
Issue1
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s00531-026-02558-xSearch in ResearchGate
Generate Citation Formats
Mindat Ref. ID19631817Long-form Identifiermindat:1:5:19631817:4
GUID0
Full ReferenceBasumatary, Pallabi; Prakash, Tribujjal; Chauhan, Hiredya; Gogoi, Bibhuti (2026) Tracing magma genesis and post-emplacement processes of aplites in the Mikir Massif, Northeast India: implementing fractal dimension and lacunarity analyses to decode textural heterogeneity. International Journal of Earth Sciences, 115 (1). doi:10.1007/s00531-026-02558-x
Plain TextBasumatary, Pallabi; Prakash, Tribujjal; Chauhan, Hiredya; Gogoi, Bibhuti (2026) Tracing magma genesis and post-emplacement processes of aplites in the Mikir Massif, Northeast India: implementing fractal dimension and lacunarity analyses to decode textural heterogeneity. International Journal of Earth Sciences, 115 (1). doi:10.1007/s00531-026-02558-x
In(2026, February) International Journal of Earth Sciences Vol. 115 (1). Springer Science and Business Media LLC

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Balaram V, Saxena VK, Manikyamba C, Ramesh SL (1990) Determination of rare earth elements in Japanese rock standards by inductively coupled plasma mass spectrometry. At Spectrosc 11:19–23
Bowen NL (1928) The evolution of the igneous rocks. Princeton University Press
Breaks FW, Selway JB, Tindle AC (2005) Fertile peraluminous granites and related rare-element pegmatites, Superior Province of Ontario. in ‘‘Rare Element Geochemistry and Mineral Deposits’’, R.L. Linnen & I.M. Sampson, eds. Geol Soc Can Short Course Notes, St. Catharines 17:87–125
Brisbin WC (1986) Mechanics of pegmatite intrusion. Am Min 71(3–4):644–651
Cerny P, Meintzer RE, Anderson AJ (1985) Extreme fractionation in rare-element granitic pegmatites; selected examples of data and mechanisms. Can Mineral 23(3):381–421
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Fenn PM (1977) The nucleation and growth of alkali feldspars from hydrous melts. Can Mineral 15(2):135–161
Not Yet Imported: - book-chapter : 10.1007/978-1-4899-1397-5_12

If you would like this item imported into the Digital Library, please contact us quoting Book ID 9781489913999
Gogoi B, Basumatary P (2025) A petrogenetic model for the origin of migmatites in the Assam-Meghalaya Gneissic complex, Northeast India: constraints from mineralogy with special reference to magnetite. Acta Geochim. https://doi.org/10.1007/s11631-025-00820-8
Hazarika G, Chauhan H, Gogoi B (2024) Fractal analysis and formation of biotite clots within double-layered mafic magmatic enclaves in the Bamuni Pluton, Mikir Massif, Northeast India. Period Mineral 93:85–103
Jahns RH, Tuttle OF (1963) Layered pegmatite-aplite intrusives. Min Soc Amer Spec Pap 1:78–92
London D (2008) Pegmatites. Can Mineral 10:347
MacLellan HE, Trembath LT (1991) The role of quartz crystallization in the development and preservation of igneous texture in granitic rocks; experimental evidence at 1 kbar. Am Min 76(7–8):1291–1305
Mandelbrot BB (1982) The fractal geometry of nature. San Francisco, 480
Nabelek PI (1986) Trace-element modeling of the petrogenesis of granophyres and aplites in the Notch Peak granitic stock. Utah Am Min 71(3–4):460–471
Perugini D, Poli G (2000) Chaotic dynamics and fractals in magmatic interaction processes: a different approach for the interpretation of mafic microgranular enclaves. Earth Planet Sci Lett 175(1–2):93–103
Piccoli PM, Candela PA, Jugo PJ, Frank MR (1996) Contrasting syn–late magmatic intrusive behavior of aplite dikes in the Tuolumne Intrusive Suite, California: implications for magma rheology. In Cordilleran Section of the Geol Soc America (a symposium in honor of Paul Bateman) 28:101
Prakash T, Basumatary P, Gogoi B (2024) Origin of graphic texture by magma mixing-induced undercooling in the Borjuri diorite pluton, Mikir Massif, Northeast India. Period Mineral. https://doi.org/10.13133/2239-1002/18561
Shand SJ (1943) Eruptive rocks. Their genesis, composition, classification, and their relation to ore-deposits with a chapter on meteorite. Wiley, New York
Swanson SE (1977) Relation of nucleation and crystal-growth rate to the development of granitic textures. Am Mineral 62(9–10):966–978
Tammann GHJA (1925) The States of Aggregation: The changes in the state of matter in their dependence upon pressure and temperature. van Nostrand
Not Yet Imported: - monograph : 10.1017/CBO9781139174695

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Tuttle OF, Bowen NL (1958) Origin of granite in the light of experimental studies in the system NaAlSi3O8–KAlSi3O8–SiO2–H2O
Winter JD (2001) An introduction to igneous and metamorphic petrology. Prentice Hall


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