128:. With this instrument, his group succeeded in imaging individual atoms with subatomic resolution, which was used, for example, to investigate the atomic mechanism of friction. With P. Chaudhari and D. Dimos, J. Mannhart revealed that grain alignment is key to the fabrication of
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Reyren, N.; Thiel, S.; Caviglia, A. D.; Kourkoutis, L. Fitting; Hammerl, G.; Richter, C.; Schneider, C. W.; Kopp, T.; Rüetschi, A.-S.; Jaccard, D.; Gabay, M.; Muller, D. A.; Triscone, J.-M.; Mannhart, J. (31 August 2007).
53:, where he was manager of the New Materials and Heterostructures research group. From 1996 to 2011, he was a chaired professor at the Center for Electronic Correlations and Magnetism at the
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120:, in which phase changes can be switched at interface layers, including phase changes to superconductivity. Under his leadership, his research group has developed an improved
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Li, Lu; Richter, C.; Paetel, S.; Kopp, T.; Mannhart, J.; Ashoori, R. C. (13 May 2011). "Very Large
Capacitance Enhancement in a Two-Dimensional Electron System".
65:
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96:(German Research Society, DFG), award endowment 2.5 million euros, for his research in the field of experimental solid-state physics. In 1986, he received the
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Mannhart, J.; Bosch, J.; Gross, R.; Huebener, R. P. (1 April 1987). "Two-dimensional imaging of trapped magnetic flux quanta in
Josephson tunnel junctions".
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Dimos, D.; Chaudhari, P.; Mannhart, J.; LeGoues, F. K. (11 July 1988). "Orientation
Dependence of Grain-Boundary Critical Currents inYBa2Cu3O7−δBicrystals".
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to evaporate sources of material which then condense upon a substrate. Another research area is thermoelectronic generators.
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Cen, Cheng; Thiel, Stefan; Mannhart, Jochen; Levy, Jeremy (20 February 2009). "Oxide
Nanoelectronics on Demand".
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with useful critical currents, so that they are suitable for practical applications such as modern high-
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Loder, F.; Kampf, A. P.; Kopp, T.; Mannhart, J.; Schneider, C. W.; Barash, Y. S. (16 December 2007).
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Herz, M.; Giessibl, F. J.; Mannhart, J. (1 July 2003). "Probing the shape of atoms in real space".
42:, Germany, from 1980 to 1986, where he also received his PhD in 1987 and his habilitation in 1994.
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Mannhart, J.; Schlom, D. G. (26 March 2010). "Oxide
Interfaces—An Opportunity for Electronics".
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611:"Subatomic Features on the Silicon (111)-(7×7) Surface Observed by Atomic Force Microscopy"
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Thiel, S.; Hammerl, G.; Schmehl, A.; Schneider, C. W.; Mannhart, J. (29 September 2006).
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in
Yorktown Heights, NY. From 1989 to 1996, he was a Research Staff Member at the
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Giessibl, Franz J.; Hembacher, S.; Bielefeldt, H.; Mannhart, J. (21 July 2000).
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448:(5795). American Association for the Advancement of Science (AAAS): 1942–1945.
391:(5842). American Association for the Advancement of Science (AAAS): 1196–1199.
285:(5917). American Association for the Advancement of Science (AAAS): 1026–1030.
232:(5973). American Association for the Advancement of Science (AAAS): 1607–1611.
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624:(5478). American Association for the Advancement of Science (AAAS): 422–425.
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Mannhart’s research includes the fabrication of novel all-oxide
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is awarded to Jochen
Mannhart. He was the 2008 recipient of the
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332:"Magnetic flux periodicity of h/e in superconducting loops"
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Giessibl, F. J.; Herz, M.; Mannhart, J. (27 August 2002).
64:
Since the summer of 2011, he has been a director of the
342:(2). Springer Science and Business Media LLC: 112–115.
378:"Superconducting Interfaces Between Insulating Oxides"
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superconducting cables. In 2019, his group discovered
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From 1987 to 1989, he was a visiting scientist at the
706:(10). American Physical Society (APS): 5267–5269.
850:"New highly efficient thermoelectronic generator"
800:Braun, Wolfgang; Mannhart, Jochen (2019-08-14).
743:Braun, Wolfgang; Mannhart, Jochen (2019-08-14).
669:(2). American Physical Society (APS): 219–222.
554:Proceedings of the National Academy of Sciences
802:"Film deposition by thermal laser evaporation"
745:"Film deposition by thermal laser evaporation"
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908:Scientists from Baden-Württemberg
130:high-temperature superconductors
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22:(born 24 April 1960 in
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185:2011Sci...332..825L
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770:10.1063/1.5111678
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495:Physical Review B
169:(6031): 825–828.
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