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Graphene based nano electronics and nano electromechanics; focusing on precise control of nano structures for studying accurate physical properties

 

Dr. SangWook Lee

Department of Physics, Ewha Womans University

 

Mar. 24 (Fri.), 4:00 PM

#1323 (1st fl. E6-2)

 

Abstract:

In this presentation, we will present our recent progress on the fabrication and characterization of graphene based nano electronic and electromechanical devices. Mirco contact transfer method have been utilized for controlling the position of nano materials so that various 2 dimensional and 3 dimensional device structures could be realized. At first, the interlayer transport properties of twisted bilayer graphene will be introduced. The temperature dependent electrical properties showed that there is intriguing correlation to quantum coherence with inter-layer distances of graphene. Based on the previous result, we will show our plan to control the distance of two layers in reversible way so that interlayer coupling can be precisely controlled during transport measurement. Mechanical and electromechanical properties of xylophone like suspended graphene ribbon arrays will be presented in the second part. Basic mechanical and electromechanical properties of suspended graphene structures studied by our group will be reported. Our idea to improve the mass change detection sensitivity and to investigate quantum mechanical properties of nano mechanical resonators will be shared in the end of this presentation.

 

Contact: SunYoung Choi (sunyoungchoi@kaist.ac.kr)

번호 seminar Date Venue 제목
공지     Spring 2019: Physics Seminar Serises
공지     Spring 2019: Physics Colloquium
공지   Seminar Room #1323  Fall 2017: Physics Seminar Serises
공지   Seminar Room 1501  Fall 2017: Physics Colloquium
121     Exact Solution for the Interacting Kitaev Chain at Symmetric Point file
120     An Introduction to Quantum Spin Liquids file
119     Time-resolved ARPES study of Dirac and topological materials
118   E6-2. #1323(1st fl.)  Quantum information experiments using few electron spins in semiconductors
117   #1323(E6-2. 1st fl.)  Bandgap Engineering of Black Phosphorus
116   #1323(E6-2. 1st fl.)  Dirac fermions in condensed matters
115   E6-2. #1323(1st fl.)  Low Dimensional Active Plasmonics and Electron Optics in Graphene
114   #1323(E6-2. 1st fl.)  Realizing Haldane Model in Fe-based Honeycomb Ferromagnetic Insulators
113   #5318(5th fl.)  Non-equilibrium many-body spin dynamics in diamond
112   #1323(E6-2. 1st fl.)  Harmonic oscillator physics with single atoms in a state-selective optical potential
111   #1323(E6-2. 1st fl.)  Symmetry Protected Kondo Metals and Their Phase Transitions
110   #1323(E6-2. 1st fl.)  Dynamical Resonance between Two Optical Cavities via Optomechanical Oscillator
109   #1323(E6-2. 1st fl.  Shift Charge and Spin Photocurrents in Dirac Surface States of Topological Insulator
108   #1323(E6-2. 1st fl.)  Entanglement area law in strongly-correlated systems
107   1:30p.m. #1323(E6-2. 1st fl.)  “Possible symmetry in the phase diagrams of electron- & hole-doped cuprate high-Tc superconductors”
106   Lecture Hall, College of Natural Sciences [#1501,E6-2]  Topological Defects and Phase Transitions
105   #1323(E6-2. 1st fl.)  Quantum electron optics using flying electrons
104   #1323(E6-2. 1st fl.)  “Progress in the comparison of ARPES to DMFT for d and f strongly correlated electron systems”
103   Seminar Room 1323  Spring 2017: Physics Seminar Serises file
102   Seminar Room 1501  Spring 2017: Physics Colloquium file