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报告题目:
Gate controlled non-volatile graphene ferroelectric memory and spin injection into graphene via MgO barriers
 报告人:
Barbaros ?zyilmaz
报告时间:
2009-07-08 16:00
报告地点:
物理系三楼报告厅
主办单位:
物理系
  简介:
报告摘要:I will show non-volatile switching in graphene by using ferroelectric gating 
         without having to break the lattice symmetry. We demonstrate basic writing and reading processes of a novel 
         graphene-ferroelectric memory device structure combining the field dependent conductance of graphene with the
         remnant electric field of ferroelectric thin films. A bistable state of high and low resistance value is realized
         by controlling the electrical doping level in graphene hysteretically, which is caused by a hysteretic switching 
         of the polarization in the ferroelectric thin-film. Our approach of ferroelectric gating also open up the
         possibility of studying graphene phenomena in the limit of high carrier concentration, which is not possible with 
         dielectric gating.
         I will also report on our resent results on spin transport in graphene observed in the non-local device geometry.
         Here we have used MBE grown MgO as a tunneling barrier.
报告人简介:Barbaros OZYILMAZ
           Ph.D. (New York University)
           Assistant Professor
           Physics Department, NUS
           2 Science Drive 3
           Singapore 117542
           Office: S13-02-10
           Tel: (65)-6516-6979
           Fax: (65)-6777-6126
           Email: phyob@nus.edu.sg; http://staff.science.nus.edu.sg/~barbaros/
Selected Publications:
           Electronic transport and quantum Hall effect in bipolar graphene p-n-p junctions, B. ?zyilmaz, P. 
           Jarillo-Herrero, D. Efetov, D. A. Abanin, L. S. Levitov, Phys. Rev. Lett. 99,  166804 (2007).
           Current Induced Excitations in Cu/Co/Cu Single Ferromagnetic Layer Nanopillars, B. ?zyilmaz, A. D. Kent, J. Z.
           Sun, M. J. Rooks and R. H. Koch., Phys. Rev. Lett., 93, 176604 (2004).
           Current-Induced Magnetization Reversal in High Magnetic Fields in Co/Cu/Co Nanopillars, B. ?zyilmaz, A. D. Kent,
           D. Monsma, J. Z. Sun, M. J. Rooks, and R. H. Koch., Phys. Rev. Lett., 91, 067203 (2003).
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