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  • DGIST Spin Lab.
  • Professor
  • Member
  • Research
  • Publication
  • Facilities
  • Gallery
  • More
    • DGIST Spin Lab.
    • Professor
    • Member
    • Research
    • Publication
    • Facilities
    • Gallery

Research Interests

Brillouin Light Scattering

Spin Orbit Torque

Domain wall motion

Exchange bias

Magneto Transports

Micromagnetics simulation

Magneto Transports

  • Transport Properties of Ferromagnetic Materials

  • Physics of Tunneling/Giant Magnetoresistance

  • Temperature Dependent magnetic transport/static properties

Brillouin Light Scattering

Spin Orbit Torque

Domain wall motion

Exchange bias

Magneto Transports

Magnetics simulation

Representative Publications

  • Chun-Yeol You, and Hyungsuk Kim, "Effect of Finite Tunneling Magnetoresistance for the Switching Dynamics in the Spin Transfer Torqued Magnetic Tunneling Junctions", IEEE Trans. Magn. 53, 11 (2017).

  • Woosuk Yoo, Seongmin Choo, Kyujoon Lee, Sinyong Jo, Chun-Yeol You, Jung-Il Hong, and Myung-Hwa Jung, "Exchange Bias Effect Determined by Anisotropic Magnetoresistance in CoxNi1−xO/Ni0.8Fe0.2 Bilayer System", IEEE Trans. Magn. 51, 4800304 (2015).

  • Jeong-Seop Lee, Jungbum Yoon, Mool-Bit Kang, Chun-Yeol You, “Low coercivity giant magnetoresistance with perpendicular magnetic anisotropy”, J. Magn. Magn. Mater. 358-359, 159 (2014).

  • Chun-Yeol You, Seung-Ho Song, and Hyungseok Kim, "Temperature dependence of the spin transfer torque and tunneling magneto-resistance in magnetic metallic and tunneling junctions", Appl. Phys. Lett. 99, 092504 (2011).

  • Chun-Yeol You, Jae-Ho Han, and Hyun-Woo Lee, "Spin transfer torque and tunneling magnetoresistance dependence on finite bias voltages and insulator barrier energy", Thin Solid Films 519, 8247 (2011).

  • Seung-Seok Ha, Kyung-Jin Lee, and Chun-Yeol You, "Effect of the resistance-area product on the temperature increase of nanopillar for spin torque magnetic memory", Curr. Appl. Phys. 10, 659 (2010).

  • C.-Y. You and S. D. Bader, "Enhancement of switching stability of tunneling magnetoresistance systems with artificial ferrimagnets", J. Appl. Phys. 92, 3886 (2002).


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