• Title/Summary/Keyword: diode laser

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Measurement of the Radiative Quantum Efficiency of a Solid-State Laser Using Photoacoustic Spectroscopy (광음향 분광을 이용한 고체레이저의 방사양자효율 측정)

  • Kim, Byung-Tai
    • Korean Journal of Optics and Photonics
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    • v.26 no.2
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    • pp.98-102
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    • 2015
  • The radiative quantum efficiency of a solid-state laser was measured by photoacoustic spectroscopy with a PZT as the detector. The radiative quantum efficiency was about 58.3 % for a laser-diode pumped Nd:S-VAP laser under lasing conditions. The measurement of radiative quantum efficiency was presented as an effective method for the optimization of a laser resonator.

Histologic Evaluation of Blood Vessels Sealed with 1,470-nm Diode Laser: Determination of Adequate Condition for Laser Vessel Sealing

  • Im, Nu-Ri;Moon, Jungho;Choi, Wonshik;Kim, Byoungjae;Lee, Jung Joo;Kim, Heejin;Baek, Seung-Kuk
    • Medical Lasers
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    • v.7 no.1
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    • pp.6-12
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    • 2018
  • Introduction Energy-based devices allow for a more rapid and efficient ligation of blood vessels during operations. In the present study, we evaluated the feasibility of a laser as an alternative energy source for the vessel sealing system and determined the optimal condition of laser for an effective vessel sealing through histologic examination. Materials and Methods The arteries (5 mm diameter) harvested from porcine legs were compressed between two glass-slides to eliminate its luminal space and were irradiated with 1,470-nm diode laser under various sealing conditions, including laser power (5-30 W), irradiation time (5 or 10 seconds), and focus mode (focus or defocus). Subsequently, the irradiated vessels were fixed in 4% formaldehyde and then processed to paraffin block. The paraffinized sample was sectioned and stained with hematoxylin and eosin for histological evaluation. Results The extent of tissue change was positively correlated with duration and power of laser. In defocus mode, the irradiated vessels showed sufficient tissue denaturation for sealing effect without severe tissue destruction. Moreover, among the various conditions of irradiation, laser power between 15 and 20 W, as well as exposure time of 5 seconds were appropriate for sealing the blood vessels. Conclusion Adequate power and irradiation duration of laser can render blood vessels to be sealed effectively, although the higher power of laser may be required to cut the vessels.

Study on Auto Focusing System of Laser Beam by Using Fiber Confocal Method (파이버 공초점법을 이용한 레이저 빔 자동 초점 제어 장치에 관한 연구)

  • Moon, Seong-Wook;Kim, Jong-Bae;King, Sun-Hum;Bae, Han-Seong;Nam, Gi-Jung
    • Laser Solutions
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    • v.9 no.3
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    • pp.7-13
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    • 2006
  • Auto focusing system to find optimized focal position of laser beam used for material process has been investigated by using fiber confocal method. Wavelength of laser diode (LD) and diameter of single-mode fiber are 780nm and $5.3{\mu}m$, respectively. Intensity distributions of beam reflected from the surface of mirror and silicon bare wafer have been observed in a gaussian form. Experimental results show that focal position obtained by LD is shifted from one observed from surface scribed by laser about $80{\mu}m$. It is due to the difference of wavelength and each divergence of between LD and laser used for material process. It is confirmed that auto focusing control system through position calibration has operated steadily.

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Fiber Length Measurement Technique based on a Self-Seeding Laser Oscillation of a Fabry-Perot Laser Diode (Fabry-Perot 레이저의 자기궤환 레이저 발진을 이용한 광섬유 길이 측정법)

  • Yoon Ki-Hong;Song Jae-Won;Kim Hyun Deok
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.41 no.12
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    • pp.51-57
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    • 2004
  • A simple fiber length measurement technique has been demonstrated by using a self-seeding laser oscillation of a Fabry-Perot laser diode. We induced a self-seeding laser oscillation through a closed-loop by adjusting the modulation frequency of a Fabry-Peort laser diode when the output optical pulse of the laser reinjected into the laser after passing through the closed-loop. The length of a fiber-under-test was calculated from the difference between my two modulation frequencies at which self-seeding laser oscillation occurs at a specific mode. We have experimentally confirmed the technique for various fiber lengths from 0.1 km to 75 km. The relative error between the measurement result of the proposed technique and that of a commercial instrument was less than 0.24 %. The repeatability of the proposed technique was better than 0.1 %.

8 Beam Laser Diode Development for Laser Scanning Unit (Laser Scanning Unit을 위한 8빔 레이저 다이오드 개발)

  • Song, Dae-Gwon;Park, Jong-Keun;Kim, Jae-Gyu;Park, Jung-Hyun;So, Sang-Yang;Kwak, Yoon-Seok;Yang, Min-Sik;Choi, An-Sik;Kim, Tae-Kyung
    • Korean Journal of Optics and Photonics
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    • v.21 no.3
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    • pp.111-117
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    • 2010
  • A 780 nm monolithic individually addressable 8-beam diode laser with 10mW optical power was developed for use in a laser scanning unit. Beam to beam spacing is $30\;{\mu}m$ and an air bridge interconnection process was developed for individual operations. From electrical and optical characteristic measurements, the developed device is a suitable optical source for a high speed laser scanning unit in multi-function printing systems and laser beam printers.

Design and Fabrication of Micro Laser Module for Heat Assisted Magnetic Recording (차세대 열 보조 자지기록용 마이크로 레이저 모듈 설계 및 제작)

  • Lee, S.C.;Choi, Y.B.;Kim, Y.J.;Kim, D.S.
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 2009.05a
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    • pp.68-69
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    • 2009
  • Heat Assisted Magnetic Recording (HAMR) is one of the most promising candidates for high density magnetic storages over 1 Tb/$in^2$ areal density. Since the precise light delivery to the head is a key factor to realize HAMR application, it is required to establish the light delivery using micro laser module and micro actuator. For the careful control of micro actuator, a laser module was designed including laser diode, optical fiber, collimating lens, and fabricated V-groove substrate. In addition, the basic aligning method between the laser module and HAMR head was studied by the detection of current change in photo diode due to the amount of reflected light from the head.

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Development of tiny green laser for mobile projectors

  • Yu, N.E.;Jung, C.;Yu, B.;Lee, Y.L.;Kim, I.S.;Choi, J.W.;Ko, D.K.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.476-477
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    • 2009
  • The smallest green laser containing a built-in temperature controlling unit has been demonstrated. The device volume was just 0.5 cubic centimeters, which is nearly the same size as existing red and blue diode lasers, has an electrical-to-optical conversion efficiency of 10% and 150 mW power output. Furthermore as an alternative approach for compact green laser development, a quasi-phase matching method with wide spectral bandwidth for the reduction of speckle noise will be presented.

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Properties of Y3Al5O12:Ce3+,Pr3+ Single Crystal for White Laser Lightings (백색 레이저 조명용 Y3Al5O12:Ce3+,Pr3+ 단결정 특성)

  • Kang, Taewook;Lim, Seokgyu;Kim, Jongsu;Lee, Bong
    • Journal of the Semiconductor & Display Technology
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    • v.17 no.4
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    • pp.37-41
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    • 2018
  • $Y_3A_{l5}O_{12}:Ce^{3+},Pr^{3+}$ single crystal phosphor was prepared by floating zone method. single crystal was confirmed to have a Ia-3d (230) space group of cubic structure and showed regular morphology. The optical properties, single crystal exhibited a emission band from green, yellow wide wavelength and 610nm, 640nm red wavelength vicinity. The luminance maintenance rate was decreased by phonon with increasing temperature, but high luminance is maintained more than powder phosphor. In addition, $Y_3A_{l5}O_{12}:Ce^{3+},Pr^{3+}$ single crystal phosphor was applied to a high power blue laser diode, we implemented high power white laser lightings. and it was confirmed that thermal properties over time, due to the effective heat transfer of complete crystal structure. We confirmed that excellent radiant heat properties than powder phosphor was applied to a high power white laser diode.

A Study on the Construction of Littman and Littrow Type Tunable Diode Laser Systems (Littman 및 Littrow 타입 파장가변 반도체 레이저의 제작에 관한 연구)

  • Baek, Woon-Sik
    • Korean Journal of Optics and Photonics
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    • v.17 no.3
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    • pp.273-277
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    • 2006
  • In this paper, we constructed the Littman type and fixed Littrow type tunable external-cavity diode laser systems. The laser output, which is the 0th-order diffracted beam from the diffraction grating in an external cavity, was the single longitudinal mode. Its FWHM was measured as less than 9MHz. With the diode driving current of 140mA and operating temperature of $25^{\circ}C$, the coarse tuning range of 5.375nm was measured for the Littman type, and of 13.65nm was measured for the fixed Littrow type. A fine tuning experiment in which an external mirror was rotated by a PZT driven by a sawtooth wave was performed, and its tuning range of 0.042nm was measured for both types. The fixed Littrow type tunable external-cavity diode laser system was an improvement on the conventional Littrow type tunable laser system in which the output direction varies due to the grating embedded in the mirror plate.

Comparison of Temperatures of the Resin Cement in Polycrystalline Ceramic Brackets Irradiated Using a Diode Laser

  • Son, Young-Tak;Son, KeunBaDa;Kim, Kyung-Min;Lee, Jae-Mok;Kim, Jin-Wook;Yu, Wonjae;Lee, Kyu-Bok
    • Journal of Korean Dental Science
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    • v.14 no.2
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    • pp.69-78
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    • 2021
  • Purpose: The primary objective of this study was to evaluate the change in the temperature of the adhesive resin in polycrystalline ceramic brackets irradiated using a diode laser at different irradiation energy levels and times. Materials and Methods: For the measurement of the temperature of the adhesive resin, it was applied at the base of the ceramic bracket, a thermocouple was placed at the center of the base surface, the bracket was placed on prepared resin specimens for light curing, and a laser was irradiated to the center of the bracket slot at 5, 7, and 10 W. For the measurement of the temperatures of the enamel under the bracket and pulp cavity, extracted premolar was fixed to a prepared mold and the ceramic bracket was bonded to the buccal surface of the premolar. The Kruskal-Wallis H test and Friedman test were used for statistical analysis. Result: At 5 W, the temperature of the adhesive resin did not reach the resin softening temperature of 200℃ within 30 seconds. At 7 W, it reached 200℃ when the ceramic bracket was irradiated continuously for 28 seconds. At 10 W, it reached 200℃ when the ceramic bracket was irradiated continuously for 15 seconds. During laser irradiation, the temperature of the enamel under the bracket increased by over 5℃ within 15 seconds. Conclusion: The use of diode laser irradiation for bracket debonding should be carefully considered because the pulp cavity temperature increases by over 5℃ within the irradiation time for resin thermal softening.