Hyuck Choo
Affiliations: | 2007 | University of California, Berkeley, Berkeley, CA, United States |
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"Hyuck Choo"Parents
Sign in to add mentorRichard S. Muller | grad student | 2007 | UC Berkeley | |
(Devices, structures, and processes for optical MEMS.) |
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Publications
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Smalley JST, Ren X, Lee JY, et al. (2020) Subwavelength pixelated CMOS color sensors based on anti-Hermitian metasurface. Nature Communications. 11: 3916 |
Kumar S, Park H, Cho H, et al. (2020) Overcoming evanescent field decay using 3D-tapered nanocavities for on-chip targeted molecular analysis. Nature Communications. 11: 2930 |
Lee JO, Narasimhan V, Balakrishna A, et al. (2019) Fabry-Pérot optical sensor and portable detector for monitoring high-resolution ocular hemodynamics. Ieee Photonics Technology Letters : a Publication of the Ieee Laser and Electro-Optics Society. 31: 423-426 |
Siddique RH, Kumar S, Narasimhan V, et al. (2019) Aluminum Metasurface with Hybrid Multipolar Plasmons for 1000-Fold Broadband Visible Fluorescence Enhancement and Multiplexed Biosensing. Acs Nano |
Narasimhan V, Siddique RH, Hoffmann M, et al. (2019) Enhanced broadband fluorescence detection of nucleic acids using multipolar gap-plasmons on biomimetic Au metasurfaces. Nanoscale |
Assumpcao D, Kumar S, Narasimhan V, et al. (2018) High-performance flexible metal-on-silicon thermocouple. Scientific Reports. 8: 13725 |
Song K, Kim J, Cho S, et al. (2018) Flexible-Device Injector with a Microflap Array for Subcutaneously Implanting Flexible Medical Electronics. Advanced Healthcare Materials. e1800419 |
Narasimhan V, Siddique RH, Lee JO, et al. (2018) Multifunctional biophotonic nanostructures inspired by the longtail glasswing butterfly for medical devices. Nature Nanotechnology |
Han SJ, Park H, Lee JO, et al. (2018) Effect of optical aberrations on intraocular pressure measurements using a microscale optical implant in ex vivo rabbit eyes. Journal of Biomedical Optics. 23: 1-9 |
Lee JO, Park H, Du J, et al. (2017) A microscale optical implant for continuous monitoring of intraocular pressure. Microsystems & Nanoengineering. 3: 17057 |