activity
20192021
collaborators

6 papers

physics.optics2021

Fourier-component engineering to control light diffraction beyond subwavelength limit

Sun-Goo Lee, Seong-Han Kim, Chul-Sik Kee

In conventional diffraction theory, a subwavelength period is considered a prerequisite to achieve interesting resonance-assisted physical phenomena, such as bound states in the co…

physics.optics2020

Band dynamics accompanied by bound states in the continuum at the third-order point in leaky-mode photonic lattices

Sun-Goo Lee, Seong-Han Kim, Chul-Sik Kee

Bound states in the continuum (BICs) and Fano resonances in planar photonic lattices, including metasurfaces and photonic crystal slabs, have been studied extensively in recent yea…

physics.optics2020

Anisotropic metallic metasurface superlattices supporting Fano resonances and bound states in the continuum

Sun-Goo Lee, Seong-Han Kim, Chul-Sik Kee

A perfect metal film with a periodic arrangement of cut-through slits, an anisotropic metallic metamaterial film, mimics a dielectric slab and supports guided electromagnetic waves…

physics.optics2020

Bound states in the continuum accompanied by avoided crossings in leaky-mode photonic lattices

Sun-Goo Lee, Seong-Han Kim, Chul-Sik Kee

When two nonorthogonal resonances are coupled to the same radiation channel, avoided crossing arises and a bound state in the continuum (BIC) appears in parametric space. This pape…

physics.optics2020

Metasurfaces with bound states in the continuum enabled by eliminating first Fourier harmonic component in lattice parameters

Sun-Goo Lee, Seong-Han Kim, Chul-Sik Kee

Conventional photonic lattices, such as metamaterials and photonic crystals, exhibit various interesting physical properties that are attributed to periodic modulations in lattice…

physics.optics2019

Scalable terahertz generation by large-area optical rectification at 80 TW laser power

Dogeun Jang, Chul Kang, Seong Ku Lee +3

We demonstrate high-energy terahertz generation from a large-aperture (75 mm diameter) lithium niobate wafer by using a femtosecond laser with energy up to 2 J. This scheme utilize…