Yonghwi Kim: Difference between revisions

From the KNI Lab at Caltech
Jump to navigation Jump to search
No edit summary
 
(2 intermediate revisions by the same user not shown)
Line 11: Line 11:
== About ==
== About ==
===== Role in the KNI =====
===== Role in the KNI =====
Yonghwi Kim is the Electron and Ion Microscope Manager for The Kavli Nanoscience Institute (KNI) at the California Institute of Technology. He oversees the daily management of the Quanta ESEM, Sirion FESEM, Nova 600 focused ion beam, Zeiss Orion Nanofab helium ion microscope, atomic force microscope, and the profilometer.
Yonghwi Kim is the Electron and Ion Microscope Manager at the Kavli Nanoscience Institute (KNI) at the California Institute of Technology. He oversees the daily operation of the Quanta scanning electron microscope (SEM) with environmental mode (ESEM), Sirion field emission SEM, Nova 600 focused ion beam (FIB), Zeiss ORION NanoFab helium/neon/gallium FIB, atomic force microscope, and profilometer. In this role, he trains researchers in equipment operation and provides technical support to enable impactful scientific discoveries.
 
Yonghwi joined Caltech in 2013 as a Ph.D. student in Electrical Engineering, conducting his doctoral research in Prof. Harry A. Atwater’s group on electrically reconfigurable nanophotonic devices based on phase-transition materials. After completing his Ph.D., he pursued postdoctoral research at NTT Research while serving as a Visiting Associate at Caltech, where he advanced nanofabrication methods for nonlinear optical waveguides in the KNI cleanroom. He returned to Caltech in 2025 to continue his technical career as the Electron and Ion Microscope Manager at the KNI.


===== Education =====
===== Education =====
Yonghwi received his Ph.D. and M.S. in Electrical Engineering from Caltech under Prof. Harry A. Atwater. Thesis title: Light modulation with vanadium dioxide-based optical devices.
Yonghwi received his Ph.D. and M.S. degrees in Electrical Engineering from Caltech under the supervision of Prof. Harry A. Atwater. Prior to that, he earned his B.S. and M.S. degrees in Electrical and Electronic Engineering from Yonsei University in Seoul, South Korea, advised by Prof. Donghyun Kim.


== List of Managed Instruments ==
== List of Managed Instruments ==
<!>
 
===== Focused Ion Beam (FIB) Systems =====
===== Focused Ion Beam (FIB) Systems =====
* [[ORION NanoFab: Helium, Neon & Gallium FIB | Helium, Neon & Gallium FIB: Zeiss ORION NanoFab]]
* [[ORION NanoFab: Helium, Neon & Gallium FIB | Helium, Neon & Gallium FIB: Zeiss ORION NanoFab]]
Line 29: Line 31:
* [[Dimension Icon: Atomic Force Microscope (AFM) | Atomic Force Microscope (AFM): Bruker Dimension Icon]]
* [[Dimension Icon: Atomic Force Microscope (AFM) | Atomic Force Microscope (AFM): Bruker Dimension Icon]]
* [[Dektak 3ST: Profilometer | Profilometer: Veeco Dektak 3ST]]
* [[Dektak 3ST: Profilometer | Profilometer: Veeco Dektak 3ST]]
== Selected Publications ==
• '''Kim, Y.''' et al., “Phase Modulation with Electrically Tunable Vanadium Dioxide Phase-Change Metasurfaces,” '''''Nano Letters''''', 2019.
• '''Kim, Y'''. et al., "Nanogap-based dielectric-specific colocalization for highly sensitive surface plasmon resonance detection of biotin-streptavidin interactions," '''''Applied Physics Letters''''', 2012.
• Gao, R., Kelzenberg M. D., '''Kim, Y.''' et al., “Optical characterization of silicon nitride metagrating-based lightsails for self-stabilization,” '''''ACS Photonics''''', 2022.
• Shayegan, K. J., Zhao, B., '''Kim, Y.''' et al., “Nonreciprocal infrared absorption via resonant magneto-optical coupling to InAs,” '''''Science Advances''''', 2022.
• '''Kim, Y.''' et al., “Electrically Tunable Metasurfaces Incorporating A Phase Change Material,” '''''U.S. Patent''', 2024.''

Latest revision as of 16:40, 6 October 2025

Yonghwi Kim
[[image:|320x373px|center|]]
Title Electron and Ion Microscope Manager
Responsibilities Scanning electron microscopes, focused ion beam, helium ion beam, AFM, profilometer
Email ykim@caltech.edu
Phone 626-395-3371 (office)
Office 303 Steele

About

Role in the KNI

Yonghwi Kim is the Electron and Ion Microscope Manager at the Kavli Nanoscience Institute (KNI) at the California Institute of Technology. He oversees the daily operation of the Quanta scanning electron microscope (SEM) with environmental mode (ESEM), Sirion field emission SEM, Nova 600 focused ion beam (FIB), Zeiss ORION NanoFab helium/neon/gallium FIB, atomic force microscope, and profilometer. In this role, he trains researchers in equipment operation and provides technical support to enable impactful scientific discoveries.

Yonghwi joined Caltech in 2013 as a Ph.D. student in Electrical Engineering, conducting his doctoral research in Prof. Harry A. Atwater’s group on electrically reconfigurable nanophotonic devices based on phase-transition materials. After completing his Ph.D., he pursued postdoctoral research at NTT Research while serving as a Visiting Associate at Caltech, where he advanced nanofabrication methods for nonlinear optical waveguides in the KNI cleanroom. He returned to Caltech in 2025 to continue his technical career as the Electron and Ion Microscope Manager at the KNI.

Education

Yonghwi received his Ph.D. and M.S. degrees in Electrical Engineering from Caltech under the supervision of Prof. Harry A. Atwater. Prior to that, he earned his B.S. and M.S. degrees in Electrical and Electronic Engineering from Yonsei University in Seoul, South Korea, advised by Prof. Donghyun Kim.

List of Managed Instruments

Focused Ion Beam (FIB) Systems
Scanning Electron Microscopes (SEMs)
Scanning Probe Microscopes

Selected Publications

Kim, Y. et al., “Phase Modulation with Electrically Tunable Vanadium Dioxide Phase-Change Metasurfaces,” Nano Letters, 2019.

Kim, Y. et al., "Nanogap-based dielectric-specific colocalization for highly sensitive surface plasmon resonance detection of biotin-streptavidin interactions," Applied Physics Letters, 2012.

• Gao, R., Kelzenberg M. D., Kim, Y. et al., “Optical characterization of silicon nitride metagrating-based lightsails for self-stabilization,” ACS Photonics, 2022.

• Shayegan, K. J., Zhao, B., Kim, Y. et al., “Nonreciprocal infrared absorption via resonant magneto-optical coupling to InAs,” Science Advances, 2022.

Kim, Y. et al., “Electrically Tunable Metasurfaces Incorporating A Phase Change Material,” U.S. Patent, 2024.