000723405 000__ 04729cam\a2200529Ii\4500 000723405 001__ 723405 000723405 005__ 20230306140336.0 000723405 006__ m\\\\\o\\d\\\\\\\\ 000723405 007__ cr\cn\nnnunnun 000723405 008__ 140806t20142015sz\a\\\\ob\\\\000\0\eng\d 000723405 019__ $$a894170077 000723405 020__ $$a9783319063850$$qelectronic book 000723405 020__ $$a3319063855$$qelectronic book 000723405 020__ $$z9783319063843 000723405 0247_ $$a10.1007/978-3-319-06385-0$$2doi 000723405 035__ $$aSP(OCoLC)ocn885340803 000723405 035__ $$aSP(OCoLC)885340803$$z(OCoLC)894170077 000723405 040__ $$aGW5XE$$beng$$erda$$epn$$cGW5XE$$dN$T$$dYDXCP$$dOCLCF$$dEBLCP$$dDEBSZ 000723405 049__ $$aISEA 000723405 050_4 $$aQH212.S35 000723405 08204 $$a502./2$$223 000723405 1001_ $$aPrüser, Henning,$$eauthor. 000723405 24510 $$aScanning tunneling spectroscopy of magnetic bulk impurities$$h[electronic resource] :$$bfrom a single Kondo atom towards a coupled system /$$cHenning Prüser. 000723405 264_1 $$aCham :$$bSpringer,$$c[2014] 000723405 264_4 $$c©2015 000723405 300__ $$a1 online resource (xiii, 109 pages) :$$billustrations (some color). 000723405 336__ $$atext$$btxt$$2rdacontent 000723405 337__ $$acomputer$$bc$$2rdamedia 000723405 338__ $$aonline resource$$bcr$$2rdacarrier 000723405 4901_ $$aSpringer theses,$$x2190-5053 000723405 500__ $$a"Doctoral thesis accepted by the University of Göttingen, Germany." 000723405 504__ $$aIncludes bibliographical references. 000723405 5050_ $$aSupervisors' Foreword; Contents; Abbreviations and Symbols; 1 Introduction; References; 2 Experimental Setup and Background; 2.1...Sample Preparation; 2.1.1 UHV Preparation Chamber; 2.1.2 Single Crystal Preparation and Characterization; 2.1.3 Sample Holder; 2.1.4 Argon Sputtering; 2.1.5 Annealing; 2.1.6 Substrate Characterization; 2.1.7 Epitaxy of Diluted Cu Films; 2.1.8 Co in Cu(100); 2.1.9 Fe in Cu(100); 2.1.10 Ag in Cu(100); 2.2...Scanning Tunneling Microscopy; 2.2.1 Standard STM Theory; 2.2.2 Constant Current Topography; 2.2.3 Multi-bias Topographies; 2.2.4 dI/dV Spectroscopy 000723405 5058_ $$a2.2.5 Lock-in Technique2.2.6 Basic Principle; 2.2.7 Data Processing; 2.2.8 STS Normalization; References; 3 Investigation of Sub-surface Atoms by STM; 3.1...Imaging Buried Impurities; 3.1.1 Electron Focusing Effect; 3.1.2 Oscillation Wave Length; 3.1.3 Impact of the Surface; 3.1.4 The Cu(100) Surface; 3.2...Extracting the Impurity Position Below the Surface; References; 4 Kondo Physics of Single Sub-surface Atoms; 4.1...State of the Art; 4.2...Long-Range Kondo Signature of a Single Magnetic Atom; 4.3...The Vicinity of an Kondo Impurity; 4.3.1 Friedel Oscillation: The Impact of the Band Structure 000723405 5058_ $$a4.3.2 Model of Resonant Scattering: A Kondo Impurity4.4...Simulation; 4.5...Phenomenological Fit Formula; 4.6...Microscopic Parameters of Iron and Cobalt Atoms; 4.7...Distance Dependence of the Kondo Signature; 4.7.1 Lateral Dependence; 4.7.2 Dependence on the Impurity Position Below the Surface; 4.8...Spatial Dependence of the Kondo Temperature; 4.9...Discussion; References; 5 Signatures of Non-magnetic Atoms; 5.1...Topographic Investigation; 5.2...Voltage Dependence of the Interference Pattern; 5.2.1 Comparison with Magnetic Impurities; 5.3...Signatures Around the Fermi Energy; 5.4...Summary; References 000723405 5058_ $$a6 Two-Impurity Kondo Physics6.1...The Two-Impurity Kondo Model; 6.1.1 Fundamentals; 6.1.2 Competing Effects; 6.2...Characterization of Fe Dimers; 6.3...Comparison with Theoretical Results; 6.4...Conclusion; References; 7 Outlook; References; 8 Summary; Appendix 000723405 506__ $$aAccess limited to authorized users. 000723405 520__ $$aMagnetic impurities in a non-magnetic host metal have been?actively explored in condensed matter physics?in recent?last decades. From?both fundamental and applied?viewpoints these systems are very interesting because they can exhibit strong electronic correlations that give rise to various fascinating phenomena beyond the single particle picture. Up to now our understanding of the underlying processes remains limited due to difficulties involved in measuring these systems on a microscopic scale. With?their unique control, scanning tunneling microscopy (STM) and spectroscopy (STS) allow for the. 000723405 588__ $$aDescription based on online resource; title from PDF title page (SpringerLink, viewed August 6, 2014). 000723405 650_0 $$aScanning tunneling microscopy. 000723405 650_0 $$aKondo effect. 000723405 77608 $$iPrint version:$$aPrüser, Henning$$tScanning Tunneling Spectroscopy of Magnetic Bulk Impurities : From a Single Kondo Atom Towards a Coupled System$$dDordrecht : Springer,c2014$$z9783319063843 000723405 830_0 $$aSpringer theses. 000723405 852__ $$bebk 000723405 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-319-06385-0$$zOnline Access$$91397441.1 000723405 909CO $$ooai:library.usi.edu:723405$$pGLOBAL_SET 000723405 980__ $$aEBOOK 000723405 980__ $$aBIB 000723405 982__ $$aEbook 000723405 983__ $$aOnline 000723405 994__ $$a92$$bISE