Soonchil Lee

Soonchil Lee

Korea Advanced Institute of Science and Technology

Professor

Department of Physics

Research Area

  • #Materials science
  • #Condensed matter physics
  • #Magnetization
  • #Magnetic field
  • #Hyperfine structure
  • #Physics
  • #Polarization (waves)
  • #Nuclear magnetic resonance
  • #Magnetic anisotropy
  • #Spin-½

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Related papers to
‘ Materials science ‘ : 14

  • Electrical control of large magnetization reversal in a helimagnet

    2014/06

    12.1 Impact Factor

    63 citations

    Yi Sheng Chai, Sang Il Kwon, Sae Hwan Chun, Ingyu Kim, Byung-Gu Jeon, Kee Hoon Kim, Soonchil Lee

    DOI : 10.1038/NCOMMS5208

    • #Materials science
    • #Condensed matter physics
    • #Magnetic field
    • #Electric field
    • #Polarization (waves)
    • #Ferrite (magnet)
    • #Magnetization
    • #Electrical control
    • #Multiferroics
    • #Magnetization reversal

All papers authored by
‘ Soonchil Lee ’ : 20

  • Electrical control of large magnetization reversal in a helimagnet

    2014/06
    NATURE COMMUNICATIONS

    12.1 Impact Factor

    63 citations

    Yi Sheng Chai, Sang Il Kwon, Sae Hwan Chun, Ingyu Kim, Byung-Gu Jeon, Kee Hoon Kim, Soonchil Lee

    DOI : 10.1038/NCOMMS5208

    • #Materials science
    • #Condensed matter physics
    • #Magnetic field
    • #Electric field
    • #Polarization (waves)
    • #Ferrite (magnet)
    • #Magnetization
    • #Electrical control
    • #Multiferroics
    • #Magnetization reversal

Related papers to
‘ Materials science ‘ : 14

  • Electrical control of large magnetization reversal in a helimagnet

    2014/06
    NATURE COMMUNICATIONS

    12.1 Impact Factor

    63 citations

    Yi Sheng Chai, Sang Il Kwon, Sae Hwan Chun, Ingyu Kim, Byung-Gu Jeon, Kee Hoon Kim, Soonchil Lee

    DOI : 10.1038/NCOMMS5208

    • #Materials science
    • #Condensed matter physics
    • #Magnetic field
    • #Electric field
    • #Polarization (waves)
    • #Ferrite (magnet)
    • #Magnetization
    • #Electrical control
    • #Multiferroics
    • #Magnetization reversal
  • Efficient dynamic nuclear polarization of phosphorus in silicon in strong magnetic fields and at low temperatures

    2014/12
    PHYSICAL REVIEW B

    3.7 Impact Factor

    13 citations

    J. Järvinen, J. Ahokas, S. Sheludyakov, O. Vainio, L. Lehtonen, S. Vasiliev, D. Zvezdov, Y. Fujii, S. Mitsudo, T. Mizusaki, M. Gwak, SangGap Lee, Soonchil Lee, L. Vlasenko

    DOI : 10.1103/PHYSREVB.90.214401

    • #Materials science
    • #Atomic physics
    • #Nuclear magnetic resonance
    • #Magnetic field
    • #Polarization (waves)
    • #Relaxation (NMR)
    • #Orders of magnitude (numbers)
    • #Hyperfine structure
    • #Spin (physics)
    • #Spin states
    • #Nuclear Overhauser effect

Get access to
Contact information

Log in

All papers authored by
‘ Soonchil Lee ’ : 20

  • Electrical control of large magnetization reversal in a helimagnet

    2014/06
    NATURE COMMUNICATIONS

    12.1 Impact Factor

    63 citations

    Yi Sheng Chai, Sang Il Kwon, Sae Hwan Chun, Ingyu Kim, Byung-Gu Jeon, Kee Hoon Kim, Soonchil Lee

    DOI : 10.1038/NCOMMS5208

    • #Materials science
    • #Condensed matter physics
    • #Magnetic field
    • #Electric field
    • #Polarization (waves)
    • #Ferrite (magnet)
    • #Magnetization
    • #Electrical control
    • #Multiferroics
    • #Magnetization reversal
  • Efficient dynamic nuclear polarization of phosphorus in silicon in strong magnetic fields and at low temperatures

    2014/12
    PHYSICAL REVIEW B

    3.7 Impact Factor

    13 citations

    J. Järvinen, J. Ahokas, S. Sheludyakov, O. Vainio, L. Lehtonen, S. Vasiliev, D. Zvezdov, Y. Fujii, S. Mitsudo, T. Mizusaki, M. Gwak, SangGap Lee, Soonchil Lee, L. Vlasenko

    DOI : 10.1103/PHYSREVB.90.214401

    • #Materials science
    • #Atomic physics
    • #Nuclear magnetic resonance
    • #Magnetic field
    • #Polarization (waves)
    • #Relaxation (NMR)
    • #Orders of magnitude (numbers)
    • #Hyperfine structure
    • #Spin (physics)
    • #Spin states
    • #Nuclear Overhauser effect

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