Publications of Martin Gierer

Journal Article (9)

Journal Article
Setzer, C.; Platen, J.; Bludau, H.; Gierer, M.; Over, H.; Jacobi, K.: LEED intensity and surface core level shift analysis ofthe MBE-prepared GaAs (1 ̅1 ̅1 ̅)B(2×2 ) surface. Surface Science 402-404, pp. 782 - 785 (1998)
Journal Article
Gierer, M.; Over, H.; Rech, P.; Schwarz, E.; Christmann, K.: The adsorption geometry of the (2 × 1)-2O oxygen phase formed on the Co(101̅0) surface. Surface Science 370 (2-3), pp. L201 - L206 (1997)
Journal Article
Payne, S. H.; McKay, H. A.; Kreuzer, H. J.; Gierer, M.; Bludau, H.; Over, H.; Ertl, G.: Multilayer adsorption and desorption: Cs and Li on Ru(0001). Physical Review B 54 (7), pp. 5073 - 5080 (1996)
Journal Article
Schwegmann, S.; Over, H.; Gierer, M.; Ertl, G.: Initial growth of Mg films on Ru(0001): An efficient approximation scheme for the LEED analysis of incommensurate structures. Physical Review B 53 (16), pp. 11 164 - 11 169 (1996)
Journal Article
Gierer, M.; Bludau, H.; Over, H.; Ertl, G.: The bending mode vibration of CO on Ru(0001) studied with low-energy electron-diffraction. Surface Science 346 (1-3), pp. 64 - 72 (1996)
Journal Article
Hertel, T.; Over, H.; Bludau, H.; Gierer, M.; Ertl, G.: Structural analyses of ordered rubidium phases on Ru(0001) using low-energy electron diffraction. Physical Review B 50 (11), pp. 8126 - 8129 (1994)
Journal Article
Over, H.; Gierer, M.; Bludau, H.; Ertl, G.; Tong, S.Y.: Fingerprinting technique in low-energy electron diffraction. Surface Science 314 (2), pp. 243 - 268 (1994)
Journal Article
Bludau, H.; Gierer, M.; Over, H.; Ertl, G.: A low-energy electron diffraction analysis of the (√3 x √3) R30° structure of molecular nitrogen adsorbed on Ru(0001). Chemical Physics Letters 219 (5-6), pp. 452 - 456 (1994)
Journal Article
Hertel, T.; Over, H.; Bludau, H.; Gierer, M.; Ertl, G.: Na adsorption on Ru(0001): a low-energy electron-diffraction analysis of three ordered phases. Surface Science 301 (1-3), pp. 1 - 10 (1994)

Thesis - PhD (1)

Thesis - PhD
Gierer, M.: Analyse von Oberflächenstrukturen mittels Beugung langsamer Elektronen. Dissertation, Freie Universität, Berlin (1994)
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