Heedeuk Shin, Ph.D.
Affiliations: | 2011 | University of Rochester, Rochester, NY |
Area:
Quantum Physics, Optics PhysicsGoogle:
"Heedeuk Shin"Mean distance: (not calculated yet)
Parents
Sign in to add mentorRobert William Boyd | grad student | 2011 | Rochester | |
(Nonlinear and Quantum Superresolution and Fast-Light Pulse-Distortion Management.) |
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Publications
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Hwang TY, Shin H, Lee HJ, et al. (2020) Rotationally symmetric colorization of metal surfaces through omnidirectional femtosecond laser-induced periodic surface structures. Optics Letters. 45: 3414-3417 |
Kim JH, Ihn YS, Kim YH, et al. (2019) Photon-pair source working in a silicon-based detector wavelength range using tapered micro/nanofibers. Optics Letters. 44: 447-450 |
Park KD, Shin H. (2019) Unconventional Photon Pair Generation near the Pump in the Normal Group-Velocity-Dispersion Regime Nonlinear Optics |
Kim H, Shin H. (2019) Large on-chip Brillouin net amplification in silicon-based nano-photonics Aip Advances. 9: 125032 |
Lee D, Lee KJ, Kim J, et al. (2019) Fabrication method for ultra-long optical micro/nano-fibers Current Applied Physics. 19: 1334-1337 |
Hwang TY, Shin H, Kang J, et al. (2019) One-step fabrication of bi- and quad-directional femtosecond laser-induced periodic surface structures on metal with a depolarizer Applied Surface Science. 493: 231-238 |
Park K, Lee D, Ihn YS, et al. (2018) Observation of photon-pair generation in the normal group-velocity-dispersion regime with slight detuning from the pump wavelength New Journal of Physics. 20: 103004 |
Kim J, Ihn YS, Shin H, et al. (2017) Generation of near-infrared correlated photon pairs in a long optical nano-fibers Frontiers in Optics |
Siddiqui A, Reinke C, Shin H, et al. (2017) Toward high fidelity spectral sensing and RF signal processing in silicon photonic and nano-opto-mechanical platforms Proceedings of Spie. 10193 |
Lee KJ, Lee S, Shin H. (2016) Extended phase-matching properties of periodically poled potassium niobate crystals for mid-infrared polarization-entangled photon-pair generation. Applied Optics. 55: 9791-9796 |