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Bong-Sik Song

Sungkyunkwan University · Physics and Astronomy

About the Lab

Professor Bong-Sik Song's research lab specializes in photonic crystal nanocavities and integrated nanophotonic devices, focusing on high-quality (Q-factor) and ultrasmall-mode-volume optical components for next-generation optical circuits. The lab pioneers the use of wide-bandgap semiconductors—particularly 4H-silicon carbide (SiC)—to achieve ultrahigh-Q nanocavities with low propagation losses, enabling efficient light manipulation at the nanoscale. Key research directions include the design and fabrication of in-plane hetero-photonic crystals (IP-HPCs) for multichannel add/drop multiplexers and broadband waveguides, leveraging precise structural engineering to control light with high efficiency and wavelength selectivity. The lab combines theoretical modeling with advanced nanofabrication techniques, often avoiding hydrogen ion implantation to minimize optical losses.

photonic crystalsultrahigh-Q nanocavitiessilicon carbidein-plane hetero-photonic crystalsnanophotonic devices

Research Overview

Papers
85
Total Citations
7,432
Papers (5y)
13
Primary Field
Physics and Astronomy

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
13total
2020
2021
2022
2023
2025
Citations per year (5y)
90total
20202021202220232025

Selected Papers

15
1
Article|2,715 citations·2003
High-Q photonic nanocavity in a two-dimensional photonic crystal
Yoshihiro Akahane, Takashi Asano, Bong-Shik Song, Susumu Noda
SJR Q1Nature
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
2
Article|1,330 citations·2005
Ultra-high-Q photonic double-heterostructure nanocavity
Bong-Shik Song, Susumu Noda, Takashi Asano, Yoshihiro Akahane
SJR Q1Nature Materials
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Article|462 citations·2005
Fine-tuned high-Q photonic-crystal nanocavity
Yoshihiro Akahane, Takashi Asano, Bong-Shik Song, Susumu Noda
SJR Q1Optics ExpressOA

A photonic nanocavity with a high Q factor of 100,000 and a modal volume V of 0.71 cubic wavelengths, is demonstrated. According to the cavity design rule that we discovered recently, we further improve a point-defect cavity in a two-dimensional (2D) photonic crystal (PC) slab, where the arrangement of six air holes near the cavity edges is fine-tuned. We demonstrate that the measured Q factor for the designed cavity increases by a factor of 20 relative to that for a cavity without displaced air

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|298 citations·2003
Photonic Devices Based on In-Plane Hetero Photonic Crystals
Bong-Shik Song, Susumu Noda, Takashi Asano
SJR Q1Science

Photonic crystals (PCs) are optical materials of periodic refractive index, designed to block light of certain wavelengths ( [1][1] – [5][2] ). Artificial defects such as line- and/or point-defects can be introduced into PCs to allow light to be manipulated. Ultrasmall photonic devices, with sizes

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|123 citations·2019
Ultrahigh-Q photonic crystal nanocavities based on 4H silicon carbide
Bong-Shik Song, Takashi Asano, Seungwoo Jeon, Heungjoon Kim, Changxuan Chen, Dongyeon Daniel Kang, Susumu Noda
SJR Q1OpticaOA

Photonic nanocavities with high quality (Q) factors are essential components for integrated optical circuits. The use of crystalline silicon carbide (SiC) for such nanocavities enables the realization of devices with superior properties. We fabricate ultrahigh-Q SiC photonic crystal nanocavities by etching air holes into a 4H-SiC slab that is prepared without using hydrogen ion implantation, which usually causes higher absorption losses. In addition, compared to usual designs, a relatively thin

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
6
Article|114 citations·2011
Demonstration of two-dimensional photonic crystals based on silicon carbide
Bong-Shik Song, Shota Yamada, Takashi Asano, Susumu Noda
SJR Q1Optics ExpressOA

We demonstrate two-dimensional photonic crystals of silicon carbide (SiC)-a wide bandgap semiconductor and one of the hardest materials-at near-infrared wavelengths. Although the refractive index of SiC is lower than that of a conventional semiconductor such as GaAs or Si, we show theoretically that a wide photonic bandgap, a broadband waveguide, and a high-quality nanocavity comparable to those of previous photonic crystals can be obtained in SiC photonic crystals. We also develop a process for

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
7
Article|58 citations·2005
Multichannel add/drop filter based on in-plane hetero photonic Crystals
Bong-Shik Song, Takashi Asano, Y. Akahane, Yoshinori Tanaka, Susumu Noda
SJR Q1Journal of Lightwave Technology

We theoretically and experimentally investigate the characteristics of a multichannel add/drop filter which utilizes in-plane hetero photonic crystals (IP-HPCs). The structure consists of an in-plane array of photonic crystals with different lattice-constants. Finite-difference time-domain calculations reveal that optimal performance in terms of wavelength resolution and efficiency can be kept almost constant at different wavelengths even though slab thickness is not changed. The multichannel ad

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|48 citations·2004
Transmission and reflection characteristics of in-plane hetero-photonic crystals
Bong-Shik Song, Takashi Asano, Yoshihiro Akahane, Yoshinori Tanaka, Susumu Noda
SJR Q1Applied Physics Letters

We report transmission and reflection characteristics of in-plane hetero-photonic crystals (IP-HPCs) consisting of two serially connected photonic crystal waveguides with differing lattice constants. We show experimentally and theoretically that the transmission spectrum of the structure corresponds to the transmission frequency range common to both waveguides. Also, there exists a frequency gap where the structure has a guiding mode for one waveguide but not for the neighboring one. Our calcula

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|44 citations·2005
Role of interfaces in heterophotonic crystals for manipulation of photons
Bong-Shik Song, Takashi Asano, Yoshihiro Akahane, Susumu Noda
SJR Q1Physical Review B

The manipulation of photons via artificially introduced line and point defects in photonic crystals is becoming important for various scientific and engineering applications. Here, we propose a concept for realizing high extraction of the photons from a line-defect waveguide to free space through a point-defect cavity in a photonic crystal. A configuration of heterophotonic crystals with different lattice constants is introduced, and the heterostructure interface plays an important role, acting

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
10
Article|34 citations·2018
High-Q-factor nanobeam photonic crystal cavities in bulk silicon carbide
Bong-Shik Song, Seungwoo Jeon, Heungjoon Kim, Dongyeon Daniel Kang, Takashi Asano, Susumu Noda
SJR Q1Applied Physics Letters

Silicon carbide (SiC) is a promising optical material for stable and broadband nanophotonics. To date, thin crystalline SiC layers for nanophotonic platforms have been created by ion implantation or growth on other materials, which may cause optical absorption in the SiC layer. We fabricated SiC nanobeam photonic crystal cavities directly from a crystalline (4H) SiC bulk wafer using oblique plasma etching to avoid material-based optical absorptions. The measured quality (Q) factor of the nanobea

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
11
Article|28 citations·2006
Physical origin of the small modal volume of ultra-high-Q photonic double-heterostructure nanocavities
Bong-Shik Song, Takashi Asano, Susumu Noda
SJR Q1New Journal of PhysicsOA

We have recently demonstrated the fabrication of ultra-high-Q photonic double-heterostructure nanocavities with Q-factors of almost 1 million and ultra-small modal volumes with dimensions of optical wavelengths. Here, we describe the physical origin of the small modal volume by analysing the (imaginary) dispersion relations of the mode-gap of photonic crystal (PC) waveguides, where the mode-gap effect is the fundamental principle by which photons are confined in the nanocavities. By expanding th

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
12
Article|27 citations·2010
Symmetrically glass-clad photonic crystal nanocavities with ultrahigh quality factors
Bong-Shik Song, Seungwoo Jeon, Susumu Noda
SJR Q1Optics Letters

We design and fabricate ultra-high-quality (Q) photonic nanocavities in a symmetrically glass-clad silicon (Si) two-dimensional (2D) photonic crystal (PhC) structure. We theoretically investigate the dependence of the refractive index of the glass on the Q factors for asymmetric and symmetric structures. We show that the index-symmetric distribution of the glass is a critical factor to realize ultrahigh Q factors for glass-clad 2D PhC structures. We fabricate symmetrically glass-clad Si PhC nano

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
13
Article|24 citations·2008
Resonant-Wavelength Control of Nanocavities by Nanometer-Scaled Adjustment of Two-Dimensional Photonic Crystal Slab Structures
Bong-Shik Song, Takuji Nagashima, Takashi Asano, Susumu Noda
SJR Q2IEEE Photonics Technology Letters

In this letter, we experimentally demonstrate resonant-wavelength control of a series of 16 nanocavities in a two-dimensional photonic crystal slab structure by nanometer-order variation of the lattice constants and air-holes sizes. The cavities show a linear dependence on these parameters, a 1-nm increase of lattice constant or air-hole size leading to 4.2-nm increase or 1.56-nm decrease of the resonant wavelength, respectively. These experimental results are in good agreement with the finite-d

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
14
Article|23 citations·2007
Heterostructures in two-dimensional photonic-crystal slabs and their application to nanocavities
Bong-Shik Song, Takashi Asano, Susumu Noda
SJR Q1Journal of Physics D Applied Physics

In this paper, we review the fundamentals of heterostructures in two-dimensional photonic-crystal (PC) slabs and demonstrate ultra-high-Q nanocavities, which are key components for the realization of PC devices. Heterostructure PCs (hetero-PCs) consist of multiple PC waveguides with different lattice constants. Here we theoretically demonstrate the selective transmission and reflection characteristics of various hetero-PCs, including photonic-tunnelling structures. On the basis of these traits,

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
15
Article|15 citations·2015
Analysis of Q-factors of structural imperfections in triangular cross-section nanobeam photonic crystal cavities
Yuki Yamaguchi, Seungwoo Jeon, Bong-Shik Song, Yoshinori Tanaka, Takashi Asano, Susumu Noda
SJR Q2Journal of the Optical Society of America B

We present comprehensive and quantitative analysis of the effect of structural imperfections on quality (Q)-factors in triangular cross-section nanobeam photonic crystal cavities. We investigated statistically the optical losses due to the various imperfections in the air holes’ positions, radii, alignments, and surface roughness, among other factors. It is revealed that the Q-factor decreases significantly from an ideally designed value due to such imperfections, with the main influence

Atomic and Molecular Physics, and OpticsPhysics and Astronomy

Research Areas

Atomic and Molecular Physics, and OpticsElectrical and Electronic EngineeringCivil and Structural EngineeringRadiology, Nuclear Medicine and ImagingAerospace Engineering

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