Einträge von Huber, Ferdinand auf dem Publikationsserver
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Anzahl der Einträge: 11.
Weiss, Marco
, Stilp, Fabian
, Huber, Ferdinand
und Giessibl, Franz J.
(2026)
Dataset for manuscript: Electrostatic origin of multi-non-monotonic forces above single Ho, Gd and Fe adatoms on Cu(111) revealed by atomic force microscopy.
[Datensatz]
Huber, Ferdinand
(2020)
Tieftemperatur-Rasterkraftmikroskopie mit funktionalisierten Spitzen an einzelnen Adatomen.
Dissertation, Universität Regensburg.
Huber, Ferdinand
und Giessibl, Franz J.
(2020)
Experimental use of the inflection point test for force deconvolution in frequency-modulation atomic force microscopy to turn an ill-posed situation into a well-posed one by proper choice of amplitude.
Journal of Applied Physics 127 (18), S. 184301.
Volltext nicht vorhanden.
und Giessibl, Franz J.
(2020)
Experimental use of the inflection point test for force deconvolution in frequency-modulation atomic force microscopy to turn an ill-posed situation into a well-posed one by proper choice of amplitude.
Journal of Applied Physics 127 (18), S. 184301.
Volltext nicht vorhanden.
Huber, Ferdinand
, Berwanger, Julian
, Polesya, Svitlana, Mankovsky, Sergiy, Ebert, Hubert und Giessibl, Franz J.
(2019)
Chemical bond formation showing a transition from physisorption to chemisorption.
Science 366 (6462), S. 235-238.
Volltext nicht vorhanden.
, Berwanger, Julian
, Polesya, Svitlana, Mankovsky, Sergiy, Ebert, Hubert und Giessibl, Franz J.
(2019)
Chemical bond formation showing a transition from physisorption to chemisorption.
Science 366 (6462), S. 235-238.
Volltext nicht vorhanden.
Sader, John E., Hughes, Barry D.
, Huber, Ferdinand
und Giessibl, Franz J.
(2018)
Interatomic force laws that evade dynamic measurement.
Nature Nanotechnology 13 (12), S. 1088.
Volltext nicht vorhanden.
, Huber, Ferdinand
und Giessibl, Franz J.
(2018)
Interatomic force laws that evade dynamic measurement.
Nature Nanotechnology 13 (12), S. 1088.
Volltext nicht vorhanden.
Berwanger, Julian
, Huber, Ferdinand
, Stilp, Fabian und Giessibl, Franz J.
(2018)
Lateral manipulation of single iron adatoms by means of combined atomic force and scanning tunneling microscopy using CO-terminated tips.
Physical Review B (PRB) 98 (19), S. 195409.
Huber, Ferdinand und Giessibl, Franz J.
(2017)
Low noise current preamplifier for qPlus sensor deflection signal detection in atomic force microscopy at room and low temperatures.
Review of Scientific Instruments 88 (7), 073702.
Volltext nicht vorhanden.
(2017)
Low noise current preamplifier for qPlus sensor deflection signal detection in atomic force microscopy at room and low temperatures.
Review of Scientific Instruments 88 (7), 073702.
Volltext nicht vorhanden.
Huber, Ferdinand, Matencio, Sonia, Weymouth, Alfred J.
, Ocal, Carmen
, Barrena, Esther
und Giessibl, Franz J.
(2015)
Intramolecular Force Contrast and Dynamic Current-Distance Measurements at Room Temperature.
Physical Review Letters 115 (6), 066101-1-066101-4.
Emmrich, Matthias, Huber, Ferdinand, Pielmeier, Florian, Welker, Joachim, Hofmann, Thomas, Schneiderbauer, Maximilian, Meuer, Daniel, Polesya, Svitlana, Mankovsky, Sergiy, Koedderitzsch, Diemo, Ebert, Hubert und Giessibl, Franz J.
(2015)
Subatomic resolution force microscopy reveals internal structure and adsorption sites of small iron clusters.
SCIENCE 348 (6232), S. 308-311.
Emmrich, Matthias, Schneiderbauer, Maximilian, Huber, Ferdinand, Weymouth, Alfred J., Okabayashi, Norio und Giessibl, Franz J.
(2015)
Force Field Analysis Suggests a Lowering of Diffusion Barriers in Atomic Manipulation Due to Presence of STM Tip.
Physical Review Letters (PRL) 114, S. 146101.
Emmrich, Matthias, Schneiderbauer, Maximilian, Huber, Ferdinand, Weymouth, Alfred J.
, Okabayashi, Norio und Giessibl, Franz J.
(2015)
Force Field Analysis Suggests a Lowering of Diffusion Barriers in Atomic Manipulation Due to Presence of STM Tip.
Physical Review Letters 114 (14).
Volltext nicht vorhanden.
, Okabayashi, Norio und Giessibl, Franz J.
(2015)
Force Field Analysis Suggests a Lowering of Diffusion Barriers in Atomic Manipulation Due to Presence of STM Tip.
Physical Review Letters 114 (14).
Volltext nicht vorhanden.
