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- molecular beam epitaxy 15 Treffer
- strontium titanate films 11 Treffer
- x-ray diffraction 9 Treffer
- transmission electron microscopy 8 Treffer
- crystal growth 7 Treffer
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45 weitere Werte:
- thin films 7 Treffer
- x-ray photoelectron spectroscopy 7 Treffer
- crystallization 6 Treffer
- heterostructures 6 Treffer
- atomic force microscopy 5 Treffer
- epitaxy 5 Treffer
- strontium titanate 5 Treffer
- annealing of semiconductors 3 Treffer
- cobalt oxides 3 Treffer
- computer storage devices 3 Treffer
- crossbar switches (electronics) 3 Treffer
- crystal structure 3 Treffer
- crystallinity 3 Treffer
- density functional theory 3 Treffer
- dynamic random access memory 3 Treffer
- electric properties 3 Treffer
- electron diffraction 3 Treffer
- electron gas 3 Treffer
- epitaxial layers 3 Treffer
- heterojunctions 3 Treffer
- lanthanum 3 Treffer
- magnetic properties of metallic oxides 3 Treffer
- metal-insulator-metal devices 3 Treffer
- microstructure 3 Treffer
- molecular beams 3 Treffer
- perovskite 3 Treffer
- physical vapor deposition 3 Treffer
- platinum surfaces 3 Treffer
- alkaline earth metals 2 Treffer
- barium 2 Treffer
- barium titanate 2 Treffer
- cyclopentadiene 2 Treffer
- effect of temperature on metals 2 Treffer
- hydration 2 Treffer
- hydrogenation 2 Treffer
- intermetallic compounds 2 Treffer
- permittivity 2 Treffer
- piezoresponse force microscopy 2 Treffer
- rock analysis 2 Treffer
- scanning transmission electron microscopy 2 Treffer
- silicon 2 Treffer
- silicon research 2 Treffer
- strontium 2 Treffer
- strontium oxide 2 Treffer
- substrates (materials science) 2 Treffer
Publikation
Sprache
39 Treffer
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In: Journal of Chemical Physics, Jg. 145 (2016-08-14), Heft 6, S. 1-11Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 118 (2015-09-21), Heft 11, S. 115303-1- (7S.)Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 118 (2015-09-21), Heft 11, S. 115303-1- (7S.)Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 117 (2015-05-07), Heft 17, S. 17B717-1- (4S.)Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 117 (2015-05-07), Heft 17, S. 17B717-1- (4S.)Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 116 (2014-08-14), Heft 6, S. 64503-1- (13S.)Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 115 (2014-06-14), Heft 22, S. 224108-1- (8S.)Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 115 (2014-06-14), Heft 22, S. 224108-1- (8S.)Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 114 (2013-08-28), Heft 8, S. 84901-84908Online academicJournalZugriff:
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In: Journal of Vacuum Science & Technology: Part A-Vacuums, Surfaces & Films, Jg. 38 (2020-05-01), Heft 3, S. 1-10academicJournalZugriff:
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In: Journal of Vacuum Science & Technology: Part A-Vacuums, Surfaces & Films, Jg. 38 (2020-05-01), Heft 3, S. 1-10academicJournalZugriff:
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In: Journal of Vacuum Science & Technology: Part A-Vacuums, Surfaces & Films, Jg. 38 (2020-03-01), Heft 2, S. 1-10academicJournalZugriff:
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In: Journal of Vacuum Science & Technology: Part A-Vacuums, Surfaces & Films, Jg. 38 (2020), Heft 1, S. 1-5academicJournalZugriff:
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In: Journal of Vacuum Science & Technology: Part A-Vacuums, Surfaces & Films, Jg. 37 (2019-09-01), Heft 5, S. N.PAG- (8S.)academicJournalZugriff:
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In: Journal of Vacuum Science & Technology: Part A-Vacuums, Surfaces & Films, Jg. 37 (2019-09-01), Heft 5, S. N.PAG- (8S.)academicJournalZugriff:
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In: Applied Physics Letters, Jg. 104 (2014-06-16), Heft 24, S. 1-4Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 104 (2014-06-16), Heft 24, S. 1-4Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 104 (2014-02-24), Heft 8, S. 1-4Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 104 (2014-02-24), Heft 8, S. 1-5Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 104 (2014-02-24), Heft 8, S. 1-4Online academicJournalZugriff: