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Thin-film Superconductor FeSe : Scanning Tunneling Microscopy Study : 박막 아이언 셀레나이드 초전도체 : 주사형 탐침 현미경 연구

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dc.contributor.advisor국양-
dc.contributor.author이민준-
dc.date.accessioned2017-10-27T17:11:29Z-
dc.date.available2017-10-27T17:11:29Z-
dc.date.issued2017-08-
dc.identifier.other000000145732-
dc.identifier.urihttps://hdl.handle.net/10371/137137-
dc.description학위논문 (박사)-- 서울대학교 대학원 자연과학대학 물리·천문학부, 2017. 8. 국양.-
dc.description.abstractSince the discovery of superconducting phenomena by H. K. Onnes in 1911[1], superconductors have become a major research field in the solid states physics. Numerous physicists have discovered new superconductors and are working to physically explain superconductivity phenomena. In surface science, superconductors are also an interesting research topic. It mainly studies how low-dimensional physical phenomena appear in superconductors and how superconductivity itself changes at low dimension. I have studied superconductivity phenomenon in low dimension, especially two dimension, using scanning tunneling microscope (STM). The superconducting samples used in the study are tetragonal FeSe on SrTiO3(100) and hexagonal FeSe on SrTiO3(100). Tetragonal FeSe has the simplest structure among the iron chalcogenide superconductor. In 2012, the Xues group in China found that when 1 ML FeSe was grown on SrTiO3(100), the critical temperature rose to over 60 K [2], many physicists have gone into this study and tried to figure out why the critical temperature has improved . This study was initiated to clarify the pairing mechanism of tetragonal FeSe on SrTiO3(100). I analyzed the spectroscopy of STM and found the frequency of the bosonic mode that is involved in the Cooper pairing using the Eliashberg model. And I tried to find out what the expected bosonic mode is. Next, hexagonal FeSe, which is a new phase of FeSe, was grown on SrTiO3(100) and its physical properties were measured using STM. The newly discovered hexagonal phase FeSe shows many experimental results consistent with the superconducting phenomenon, but further studies are needed to confirm it as a new superconductor.-
dc.description.tableofcontentsChapter 1. Introduction to Superconductivity 1
1.1 Conventional Superconductor 4
1.1.1 Basic Introduction 5
1.1.2 BCS Theory 7
1.1.3 Eliashberg Theory 11
1.2 Unconventional Superconductivity 19
1.3 Thin-film Superconductivity 22
Chapter 2. Scanning Tunneling Microscopy and Spectroscopy 24
2.1 Principle of STM 24
2.1.1 Tunneling 25
2.1.2 Topography 29
2.1.3 Tunneling Spectroscopy 30
2.1.4 Inelastic Electron Tunneling Spectroscopy 31
2.2 Instrumentation 32
2.2.1 STM Scanner 32
2.2.2 Ultrahigh Vacuum Chamber 34
2.2.3 He3 Sorption Pumping System 36
Chapter 3. STM Study of Surface Phonon on Cu2O 38
3.1 Surface Phonon 38
3.1.1 Basic for Surface Phonon 38
3.1.2 Previous Measurement of STM-IETS 40
3.2 Surface Phonon Measured by STM-IETS 40
3.2.1 Surface Structure of Copper Oxide 41
3.2.2 STM-IETS on Copper Oxide 47
Chapter 4. STM Study of tetragonal FeSe on SrTiO3(100) 56
4.1 Introduction 56
4.1.1 Superconductivity on FeSe : From 3D to 2D 58
4.1.2 Monolayer FeSe on SrTiO3(100) 58
4.2 Experimental Results 60
4.2.1 Superconductivity and Growth Condition 60
4.2.2 Electronic Structure and Symmetry 63
4.2.3 Phase Diagram 66
4.2.4 Bosonic Modes 68
Chapter 5. STM Study of hexagonal FeSe on SrTiO3(100) 71
5.1 Introduction 71
5.1.1 Various Phase of FeSe 71
5.1.2 Hexagonal Phase of FeSe 73
5.2 Experimental Results 74
5.2.1 Structure and Spectroscopy of hexagonal FeSe 74
5.2.2 Possibility as a New Superconductor 76
Chapter 6. Conclusion 79
Appedix. A. Study of (√3×√3)R30°-Se/Au(111) 80
Appedix. B. Various Phase of CuSe on Cu(111) 83
Appedix. C. Magnetic Domain on Co/Pt(111) 84
Bibliography 86
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dc.formatapplication/pdf-
dc.format.extent5040833 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectsuperconductor-
dc.subjectthin-film superconductor-
dc.subjectiron selenide-
dc.subjectscanning tunneling microscopy-
dc.subject.ddc523.01-
dc.titleThin-film Superconductor FeSe : Scanning Tunneling Microscopy Study-
dc.title.alternative박막 아이언 셀레나이드 초전도체 : 주사형 탐침 현미경 연구-
dc.typeThesis-
dc.description.degreeDoctor-
dc.contributor.affiliation자연과학대학 물리·천문학부-
dc.date.awarded2017-08-
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