• Title/Summary/Keyword: NIR laser

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Plasmon Assisted Deep-ultraviolet Pulse Generation from Amorphous Silicon Dioxide in Nano-aperture

  • Lee, Hyunsu;Ahn, Heesang;Kim, Kyujung;Kim, Seungchul
    • Current Optics and Photonics
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    • v.2 no.4
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    • pp.361-367
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    • 2018
  • Ultrafast deep-ultraviolet (DUV) pulse generation from the subwavelength aperture of a plasmonic waveguide was investigated. The plasmonic nanofocusing of near-infrared (NIR) pulses was exploited to enhance DUV photoemission of surface third harmonic generation (STHG) at the amorphous $SiO_2$ dielectric. The generated DUV pulses which are successfully made from a nano-aperture using 10 fs NIR pulses have a spectral bandwidth of 13 nm at a carrier wavelength of 266 nm. This method is applicable for tip-based ultrafast UV laser spectroscopy of nanostructures or biomolecules

Facile Preparation of Pyrene-templated Hexagonal-shaped Gold Nanoplates

  • Lim, Eun-Kyung;Jang, Eunji;Haam, Seungjoo;Huh, Yong-Min
    • Applied Science and Convergence Technology
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    • v.23 no.1
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    • pp.48-53
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    • 2014
  • We have formulated hexagonal-shaped gold nanoplates in a single-step for photothermal therapy that gold ions to gold particles using pyrenyl dextran as reducible stabilizer and template. They exhibit anisotropic structure with broad surface plasmon resonance (SPR) band into near-infrared (NIR) spectrum enabling photothermal therapy. These gold nanoplates are also confirmed biocompatibility and high uptake efficiency due to binding with dextran molecules on the surface of gold nanoplates and cells. From in vitro phtothermal ablation study under NIR laser, gold nanoplates have the potential to use as photothermal agents.

Study on the Role and Adoption of Medical Laser Safety Officer (MLSO) (의료레이저안전관리자의 역할과 국내 적용 방안 연구)

  • Heo, Jin-Wook;Park, Hyung-Jae;Lee, Young-Woo;Chon, Kwon-Soo;Cho, Woon-Kap;Kim, Yong-Min
    • Journal of the Korean Society of Radiology
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    • v.6 no.2
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    • pp.115-120
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    • 2012
  • According to the development of laser technology, applications of laser in medical area, and the resulting risks are increasing. To ensure the safe use of laser, it is necessary to assign a person who has the knowledge of laser safety as MLSO(medical laser safety officer). In many countries, the system of laser safety officer management is operating. MLSO has the responsibilities and duties of the operation of the laser safety program, training, and education. In this study, we analyzed the adoption of MLSO through the investigation of the MLSO management status in United States.

Optical sensing techniques for simultaneous detection of nanoparticles and microorganisms in water (수질내 초미립자와 미생물의 동시 검출을 위한 광학센서기술)

  • Sohn, Ok-Jae;Hyung, Gi-Woo;Kim, Byung-Seb;Rhee, Jong-Il
    • Journal of Sensor Science and Technology
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    • v.17 no.3
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    • pp.157-161
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    • 2008
  • An optical sensor was developed to detect nanoparticles, turbid materials and microorganisms in water simultaneously. Three different light sources like UV-LED, NIR-LED and laser diode have been employed to develop the optical sensor based on the scattering light and fluorescence light. The sensor system has high selectivity and sensitivity, that it can be used to monitor the quality of drinking water.

Characteristics of Silicon Nanoparticles Depending on H2 Gas Flow During Nanoparticle Synthesis via CO2 Laser Pyrolysis (CO2 레이저 열분해법을 이용한 실리콘 나노입자 합성 시 H2 유량이 나노입자 특성에 미치는 영향)

  • Lee, Jae Hee;Kim, Seongbeom;Kim, Jongbok;Hwang, Taekseong;Lee, Jeong Chul
    • Korean Journal of Materials Research
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    • v.23 no.5
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    • pp.260-265
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    • 2013
  • Silicon nanoparticle is a promising material for electronic devices, photovoltaics, and biological applications. Here, we synthesize silicon nanoparticles via $CO_2$ laser pyrolysis and study the hydrogen flow effects on the characteristics of silicon nanoparticles using high resolution transmission electron microscopy (HRTEM), X-ray diffraction (XRD), and UV-Vis-NIR spectrophotometry. In $CO_2$ laser pyrolysis, used to synthesize the silicon nanoparticles, the wavelength of the $CO_2$ laser matches the absorption cross section of silane. Silane absorbs the $CO_2$ laser energy at a wavelength of $10.6{\mu}m$. Therefore, the laser excites silane, dissociating it to Si radical. Finally, nucleation and growth of the Si radicals generates various silicon nanoparticle. In addition, researchers can introduce hydrogen gas into silane to control the characteristics of silicon nanoparticles. Changing the hydrogen flow rate affects the nanoparticle size and crystallinity of silicon nanoparticles. Specifically, a high hydrogen flow rate produces small silicon nanoparticles and induces low crystallinity. We attribute these characteristics to the low density of the Si precursor, high hydrogen passivation probability on the surface of the silicon nanoparticles, and low reaction temperature during the synthesis.

A Study on the Photo Reversible One-dimensional Photonic Crystals Composed of TeOx(x=1.42)/SiO2 (TeOx(x=1.42)/SiO2로 구성된 광가변적인 1차원 광자결정 연구)

  • Kong, Heon;Yeo, Jong-Bin;Lee, Hyun-Yong
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.28 no.2
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    • pp.99-103
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    • 2015
  • One-dimensional photonic crystals (1D PCs) were fabricated by RF sputtering technique on p-Si (100), and fused quartz substrates. The 1D PCs structures consisted of $TeO_x$ (x=1.42), and $SiO_2$ with the difference refractive index. In order to estimate the effect on a defect level within 1D PCs structures, samples were prepared with both normal, and defect mode. The structural and optical properties were confirmed by Scanning electron microscope (SEM), and Ultraviolet visible near-infrared spectrophotometer (UV-VIS-NIR) respectively. In the case of a 1D PC normal mode without defect layer, it had a photonic band gap (PBG) in the near infrared (NIR) region. In the case of a 1D PC defect mode with defect layer, it had a sharp transmission band owing to a defect level, and moved towards the longer wavelength after exposing He-Cd laser with a wavelength of 325 nm.

Near Infrared Laser Based on Polymer Waveguide Bragg Grating (폴리머 광도파로 브래그 격자 기반의 근적외선 레이저)

  • Kim, Kyung-Jo;Son, Nam-Seon;Kim, Jun-Whee;Oh, Min-Cheol
    • Korean Journal of Optics and Photonics
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    • v.22 no.4
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    • pp.179-183
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    • 2011
  • An external cavity laser operating at near infrared wavelength is demonstrated by incorporating polymer waveguide Bragg reflectors. 3rd order Bragg grating and oversized rip waveguide structure were designed by using the effective index method and the transmission matrix method. The polymer waveguide was fabricated using polymer materials with refractive indices of 1.462 and 1.435 for the core and the cladding layers, respectively. The external feedback laser with 875-nm Bragg grating exhibits single mode lasing located at 850-nm wavelength with an output power of 0 dBm, a 20-dB bandwidth of 0.2 nm and a side mode suppression ratio of 40 dB.

Laser-induced plasma emission spectra of halogens in the helium gas flow and pulsed jet (헬륨 가스 플로우와 가스 펄스 젯에서 할로겐족 원소들의 레이저유도 플라즈마 방출 스펙트럼)

  • Lee, Yonghoon;Choi, Daewoong;Gong, Yongdeuk;Nam, Sang-Ho;Nah, Changwoon
    • Analytical Science and Technology
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    • v.26 no.4
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    • pp.235-244
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    • 2013
  • Detection of halogens using laser-induced breakdown spectroscopy (LIBS) in open air is very difficult since their strong atomic emission lines are located in VUV region. In NIR region, there are other emission lines of halogens through electronic transitions between excited states. However, these lines undergo Stark broadening severely. We report the observation of the emission lines of halogens in laser-induced plasma (LIP) spectra in NIR region using a helium gas flow. Particularly, the emission lines of iodine at 804.374 and 905.833 nm from LIPs have been observed for the first time. In the helium ambient gas, Stark broadening of the emission lines and background continuum emission could be suppressed significantly. Variations of the line intensity, plasma temperature, and electron density with the helium flow rate was investigated. Detection of chlorine and bromine in flame retardant of rubbers was demonstrated using this method. Finally, we suggest a pulsed helium gas jet as a practical and ecomonical helium gas source for the LIBS analysis of halogens in open air.

Development of a Transcutaneous Optical Information Transmission System for Total Artificial Heart Using Near Infrared Laser

  • Lee, Jung-Hoon;Kim, Wook-Eun;Choi, Jong-Hoon;Ahn, Jae-Mok;Min, Byoung-Goo
    • Proceedings of the KOSOMBE Conference
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    • v.1997 no.05
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    • pp.64-67
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    • 1997
  • In the total artificial heart(TAH), a transcutaneous information transmission system(TITS) is vely important to monitor the TAH status and detect the device failure, and repair the possible problems. First of all, the communication channel(skin) and method were simulated in terms of transmittance, scattering, reflection and absorption, then the system was designed with size reduction including low power consumption and reliability compared to the previous one. The informations are transmitted through the skin(approximately 1cm in depth) by frequency modulated near infrared(NIR) pulses using 780nm laser diodes as transmitters and photodiode as receiver with high speed and high spectral sensitivity. The logic high and low frequencies are 3MHz, 1MHz respectively. The system is a bidirectional data link for more than 38.4Kbps data rate, full-duplex with a bit error rate of less than $10^{-5}$.

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