Semantic Scholar Open Access 2023 53 sitasi

Ultra-thin light-weight laser-induced-graphene (LIG) diffractive optics

Younggeun Lee Mun Ji Low Dongwook Yang Han-Ku Nam Truong‐Son Dinh Le +11 lainnya

Abstrak

The realization of hybrid optics could be one of the best ways to fulfill the technological requirements of compact, light-weight, and multi-functional optical systems for modern industries. Planar diffractive lens (PDL) such as diffractive lenses, photonsieves, and metasurfaces can be patterned on ultra-thin flexible and stretchable substrates and be conformally attached on top of arbitrarily shaped surfaces. In this review, we introduce recent research works addressed to the design and manufacturing of ultra-thin graphene optics, which will open new markets in compact and light-weight optics for next-generation endoscopic brain imaging, space internet, real-time surface profilometry, and multi-functional mobile phones. To provide higher design flexibility, lower process complexity, and chemical-free process with reasonable investment cost, direct laser writing (DLW) of laser-induced-graphene (LIG) is actively being applied to the patterning of PDL. For realizing the best optical performances in DLW, photon-material interactions have been studied in detail with respect to different laser parameters; the resulting optical characteristics have been evaluated in terms of amplitude and phase. A series of exemplary laser-written 1D and 2D PDL structures have been actively demonstrated with different base materials, and then, the cases are being expanded to plasmonic and holographic structures. The combination of these ultra-thin and light-weight PDL with conventional bulk refractive or reflective optical elements could bring together the advantages of each optical element. By integrating these suggestions, we suggest a way to realize the hybrid PDL to be used in the future micro-electronics surface inspection, biomedical, outer space, and extended reality (XR) industries. We present how direct-laser-writing can be utilized to fabricate ultra-thin light-weight planar diffractive optics with graphene as the base material. (Inset scale bar: 1 mm).

Topik & Kata Kunci

Penulis (16)

Y

Younggeun Lee

M

Mun Ji Low

D

Dongwook Yang

H

Han-Ku Nam

T

Truong‐Son Dinh Le

S

Seung Eon Lee

H

Hyogeun Han

S

Seunghwan Kim

Q

Quang Huy Vu

H

H. Yoo

H

H. Yoon

J

Joohyung Lee

S

S. Sandeep

K

Keunwoo Lee

S

Seung-Woo Kim

Y

Young‐Jin Kim

Format Sitasi

Lee, Y., Low, M.J., Yang, D., Nam, H., Le, T.D., Lee, S.E. et al. (2023). Ultra-thin light-weight laser-induced-graphene (LIG) diffractive optics. https://doi.org/10.1038/s41377-023-01143-0

Akses Cepat

Lihat di Sumber doi.org/10.1038/s41377-023-01143-0
Informasi Jurnal
Tahun Terbit
2023
Bahasa
en
Total Sitasi
53×
Sumber Database
Semantic Scholar
DOI
10.1038/s41377-023-01143-0
Akses
Open Access ✓