• Title/Summary/Keyword: Optical Waveguide

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Waveguide-type Multidirectional Light Field Display

  • Rah, Hyungju;Lee, Seungmin;Ryu, Yeong Hwa;Park, Gayeon;Song, Seok Ho
    • Current Optics and Photonics
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    • v.6 no.4
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    • pp.375-380
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    • 2022
  • We demonstrate two types of light field displays based on waveguide grating coupler arrays: a line beam type and a point source type. Ultra violet imprinting of an array of diffractive nanograting cells on the top surface of a 50-㎛-thin slab waveguide can deliver a line beam or a point beam to a multidirectional light field out of the waveguide slab. By controlling the grating vectors of the nanograting cells, the waveguide modes are externally coupled to specific viewing angles to create a multidirectional light field display. Nanograting cells with periods of 300 nm-518 nm and slanted angles of -8.5°~+8.5° are fabricated by two-beam interference lithography on a 40 mm × 40 mm slab waveguide for seven different viewpoints. It is expected that it will be possible to realize a very thin and flexible panel that shows multidirectional light field images through the waveguide-type diffraction display.

Reflection-type Optical Waveguide Index Profiling Technique

  • Youk YoungChun;Kim Dug Young
    • Journal of the Optical Society of Korea
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    • v.9 no.2
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    • pp.49-53
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    • 2005
  • We report a new configuration of a reflection-type confocal scanning optical microscope system for measuring the refractive index profile of an optical waveguide. Several improvements on the earlier design are proposed; a light emitting diode (LED) at 650 nm wavelength instead of a laser diode (LD) or He-Ne laser is used as a light source for better index precision, and a simple longitudinal linear scanning and curve fitting techniques are adapted instead of a servo control for maintaining an optical confocal arrangement. We have obtained spatial resolution of 700 nm and an index precision of $2\times10^{-4}$. To verify the system's capability, the refractive index profiles of a conventional multimode fiber and a home-made four-mode fiber were examined with our proposed measurement method.

Optimization of vertical SOI slot optical waveguide with confinement factor and sensitivity for integrated-optical biochemical sensors (구속계수와 감지도에 기반한 집적광학 바이오케미컬 센서에 적합한 수직 SOI 슬롯 광 도파로 최적화)

  • Jung, Hongsik
    • Journal of Sensor Science and Technology
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    • v.30 no.3
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    • pp.131-138
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    • 2021
  • The optimization of the specifications of vertical silicon on insulator (SOI) slot optical waveguides suitable for integrated-optical biochemical sensors was performed through computational analysis of the confinement factor of the guided mode distributed in the slot in addition to analytical examination of the TE mode. The optimized specifications were confirmed based on sensitivity in terms of the change in the refractive index of the biochemical analyte. When the slot width, rail width, and height were set to 120 nm, 200 nm, and 320 nm, respectively, the confinement factor was evaluated to be about 56% and the sensitivity was at least 0.9 [RIU/nm].

Image Reconstruction Based on Deep Learning for the SPIDER Optical Interferometric System

  • Sun, Yan;Liu, Chunling;Ma, Hongliu;Zhang, Wang
    • Current Optics and Photonics
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    • v.6 no.3
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    • pp.260-269
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    • 2022
  • Segmented planar imaging detector for electro-optical reconnaissance (SPIDER) is an emerging technology for optical imaging. However, this novel detection approach is faced with degraded imaging quality. In this study, a 6 × 6 planar waveguide is used after each lenslet to expand the field of view. The imaging principles of field-plane waveguide structures are described in detail. The local multiple-sampling simulation mode is adopted to process the simulation of the improved imaging system. A novel image-reconstruction algorithm based on deep learning is proposed, which can effectively address the defects in imaging quality that arise during image reconstruction. The proposed algorithm is compared to a conventional algorithm to verify its better reconstruction results. The comparison of different scenarios confirms the suitability of the algorithm to the system in this paper.

Investigation of Planar Optical Waveguide Formed by MeV $He^{+}$ Ion-Implantation into NaEr(WO$_4$)$_2$ Crystal

  • Feng Chen;Wang, Xue-Lin;Wang, Ke-Ming;Cheng, Zhen-Xiang;Chen, Huan-Chu;Shen, Ding-Yu
    • Journal of Korean Vacuum Science & Technology
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    • v.6 no.2
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    • pp.97-100
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    • 2002
  • NaEr(WO$_4$)$_2$ is a new laser material. The planar optical waveguide was formed in NaEr(WO$_4$)$_2$ crystal by 2.6 MeV He$^{+}$ ion implantation at doses of 1.0-1.5 $\times$ 10$^{16}$ ions/cm$^2$ at room temperature. The effective refractive indices of the dark modes were measured using the prism coupling method. foul n modes and five TM modes were observed in the waveguide. The refractive index profiles were analyzed using the reflectivity calculation method (RCM). The influence of heat treatment at moderate temperature on the refractive index profiles of the waveguide was also investigated. We used the TRIM'98 (Transport of ton in Matter) code to simulate the damage profile in the NaEr(WO$_4$) crystal by 2.6 MeV He$^{+}$ion implantation which is helpful for a better understanding of the waveguide formation.ion.

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Low-Loss Compact Arrayed Waveguide Grating with Spot-Size Converter Fabricated by a Shadow-Mask Etching Technique

  • Jeong, Geon;Kim, Dong-Hoon;Choi, Jun-Seok;Lee, Dong-Hwan;Park, Mahn-Yong;Kim, Jin-Bong;Lee, Hyung-Jong;Lee, Hyun-Yong
    • ETRI Journal
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    • v.27 no.1
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    • pp.89-94
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    • 2005
  • This paper describes a low-loss, compact, 40-channel arrayed waveguide grating (AWG) which utilizes a monolithically integrated spot-size converter (SSC) for lowering the coupling loss between silica waveguides and standard single-mode fibers. The SSC is a simple waveguide structure that is tapered in both the vertical and horizontal directions. The vertically tapered structure was realized using a shadow-mask etching technique. By employing this technique, the fabricated, 40-channel, 100 GHz-spaced AWG with silica waveguides of 1.5% relative index-contrast showed an insertion-loss figure of 2.8 dB without degrading other optical performance.

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Fabrication of an Optical Polarizer Using Optical Coupling Between Single Mode Fiber and Metal-Clad Planar Waveguide (단일모드 광섬유와 금속클래드 평면도파로 사이의 광 결합을 이용한 편광기 제작)

  • Kim, Gwang-Taek;Song, Jae-Won;Jeong, Ung-Gyu;Gang, Sin-Won
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.37 no.4
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    • pp.53-59
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    • 2000
  • Based on the polarization selectivity of fiber-to-planar waveguide coupler, a novel fiber optic polarizer has been designed and fabricated. The large structural birefringence of a metal-clad planar waveguide enables the polarizer to have wide operating wavelength range. The polymer and gold were used for the guiding layer and cladding layer of the planar waveguide, respectively. The experimental results showed that either TE or TM polarized lightwave could be created by adjusting the thickness of planar waveguide. Operating wavelegth range satisfying more than 16㏈ polarization extinction ratio was 130nm. The average insertion loss of fabricated devices was order of 0.5㏈.

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Fabrication of waveguide using UV Ar-ion laser direct writing (Laser Direct Writing 방법을 이용한 광도파로 제작)

  • Kang H. S.;Suh J.;Lee J. H.;Kim J. O.
    • Laser Solutions
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    • v.8 no.1
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    • pp.9-18
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    • 2005
  • The laser direct writing method using a UV Argon-ion laser is studied for fabrication of waveguide. The laser direct writing system is constructed with a vision camera, a xy-stage, a motion controller and the delivery components of a laser beam. The UV Argon-ion laser has wavelength range of $333.6\~363.8$ nm. A photo-active UV curable polymer for a planar light-wave circuit(PLC) of single mode is used. This polymer is irradiated by Argon-ion laser and developed by a solvent after a post-baking. The optimum laser direct writing condition is obtained experimentally by changing various process parameters such as laser power, writing speed and focal length. The propagation and coupling loss of a optical waveguide was measured as 1dB/cm and 0.6dB/cm, respectively. Also, the minimum width of waveguide of $100{\mu}m$(ZPLW-207) is obtained. Finally, the waveguides of line, bend and branch type are successfully fabricated.

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Fabrication and Measurement of Optical Waveguide using Multi Quantum Well Intermixing (다중양자우물구조의 상호섞임을 이용한 광도파로의 제작 및 측정)

  • Yeo, Deok-Ho;Yoon, Kyung-Hun;Kim, Sung-June
    • Journal of the Korean Institute of Telematics and Electronics D
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    • v.36D no.7
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    • pp.50-55
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    • 1999
  • We have fabricated optical waveguide which utilizes intermixing of InGaAs/InGaAsP multi quantum well separate confinement heterostructure. The waveguide was fabricated by reactive ion etching technique using $CH_4/H_2$ gas mixture, and the width and depth of the waveguide ware $5{\mu}m$ and $1.2{\mu}m$, respectively. The propagation loss of the waveguide was measured by Fabry-Perot interference phenomena using tunable laser. For the waveguide after $800^{\circ}C$, 30s heat treatment, the measured loss was 3.76dB/cm and 3.95dB/cm for TE and TM mode, respectively. This value is very small compared to other waveguide made by IFVD technique. Hence, this technique can applied to integration of waveguide and electronic devices.

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