• 제목/요약/키워드: Laser threshold

검색결과 309건 처리시간 0.029초

색소의 혼합법과 분리법에 의한 색소레이저 에너지 증가의 비교 (Enhancement of Dye Laser Energy by Mixed and Separate Method)

  • 서욱창
    • 한국광학회:학술대회논문집
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    • 한국광학회 1989년도 제4회 파동 및 레이저 학술발표회 4th Conference on Waves and lasers 논문집 - 한국광학회
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    • pp.46-48
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    • 1989
  • In order to increase the efficiency of a bluegreen dye laser, the mixed dye method and separate dye method have been employed and the results were compared. By the mixed dye method(LD490+BBQ), the enhancement of laser energy was 193%, while by the separate dye method(LD490/BBQ), it was 90%, It was also found that the mixed dye method made the laser threshold energy decreased.

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양 단면 반사율 조합과 결합 계수 비에 따른 Complex-Coupled DFB 레이저 다이오드의 파워 추출 효율과 발진 파장 분포 (Power extraction efficiency and lasing wavelength distribution of complex-coupled DFB lasers for various facet reflectivity combinations and coupling coefficient ratios)

  • 김상택;김부균
    • 한국광학회지
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    • 제15권2호
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    • pp.149-157
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    • 2004
  • 문턱 전류 이상에서 complex-coupled(CC) DFB 레이저의 여러 가지 |$\chi$L|과 양 단면 반사율 조합에 대하여 파워 추출 효율과 발진 파장 분포를 구하였고 문턱 전류에서의 결과와 비교하였다. 또한 결함 계수 비(CR)와 Ar 단면의 반사율이 파워 추출 효율과 발진 파장 분포에 미치는 영향에 대하여 살펴보았다. 문턱 전류에서 in-phase(IP) CC DFB 레이저와 anti-phase(AP) CC DFB 레이저의 파워 추출 효율에 대하여 도시한 단일 모드 수율은 정확히 일치하였다. 그러나 문턱 전류 이상에서는 IP CC DFB 레이저의 파워 추출에 대하여 도시한 단일 모드 수율은 AP CC DFB 레이저보다 크게 나타났다. IP CC DFB 레이저의 경우 양 단면 반사율 조합이 AR-HR의 경우가 다른 반사율 조합에 비해 단일 모드 수율이 크고 또한 파워 추출 효율이 큼을 알 수 있었다. 본 논문에서 고려한 경우 중에서 |$\chi$L|이 0.8이고 AR-HR인 경우가 문턱 전류 이상에서 단일 모드 수율과 파워 추출 효율이 가장 컸다. 양 단면 반사율 조합이 AR-HR인 경우 CR이 커질수록, AR단면의 반사율이 작아질수록 spatial hole burning 현상이 완화되어 단일 모드 수율과 파워 추출 효율이 커졌다. 양 단면 반사율 조합이 AR-HR인 경우 CC DFB 레이저의 발진 파장은 DFB 금지 대역 내에 넓게 분포하였다. CR이 증가할수록 IP CC DFB 레이저는 장파장 모드에, AP CC DFB 레이저는 단파장 모드에 발진 파장 분포가 증가하였다. |$\chi$L|이 커질수록 발진 파장이 존재하는 파장 폭이 작아 지고 발진 파장 분포가 장파장 쪽으로 이동하였다.

A Fast Ground Segmentation Method for 3D Point Cloud

  • Chu, Phuong;Cho, Seoungjae;Sim, Sungdae;Kwak, Kiho;Cho, Kyungeun
    • Journal of Information Processing Systems
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    • 제13권3호
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    • pp.491-499
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    • 2017
  • In this study, we proposed a new approach to segment ground and nonground points gained from a 3D laser range sensor. The primary aim of this research was to provide a fast and effective method for ground segmentation. In each frame, we divide the point cloud into small groups. All threshold points and start-ground points in each group are then analyzed. To determine threshold points we depend on three features: gradient, lost threshold points, and abnormalities in the distance between the sensor and a particular threshold point. After a threshold point is determined, a start-ground point is then identified by considering the height difference between two consecutive points. All points from a start-ground point to the next threshold point are ground points. Other points are nonground. This process is then repeated until all points are labelled.

고출력 AlGaAs SCH-SQW 레이저 다이오드 개발 (Development of High-Power AlGaAs SCH-SQW Laser Diode)

  • 손진승;계용찬;권오대
    • 전자공학회논문지A
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    • 제30A권10호
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    • pp.27-32
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    • 1993
  • Separate-confinement hetero-structure (SCH) broad area Laser Diodes (LD's) were fabricated from $Al_{0.07}$Ga$_{0.93}$/. As single-quantum-well (SQW) grown by metal organic chemical vapor deposition (MOCVD). Under pulsed operation, we obtained maximum output powers of about 0.8watt/facet and 1.83watt/facet from LD's with 60$\mu$m and 160$\mu$m channel width, respectively, without facet coatings. The differential quantum efficiency of the 60$\mu$m wide LD was about 21.7%/facet and its threshold current density was about 1k [A/cm$^{2}$]. The differential quantum efficiency of the 160$\mu$m wide LD was about 25.6%/facet and its threshold current density was about 1k[A/cm$^{2}$]. The minimum threshold current density of 60$\mu$m wide LD's was 620[A/cm$^{2}$] when the cavity length was 603$\mu$m and the minimum threshold current density of 160$\mu$m wide Ld's was 675[A/cm$^{2}$] when the cavity length was 752$\mu$m. The internal quantum efficienty and the internal loss of both LD's were 92.3% and 18.1cm$^{1}$, respectively.

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GaAs/AlGaAs Quantum Cascade Laser에서 Deep Mesa 구조에 의한 문턱전류 감소 (Threshold Current Reduction of GaAs/AlGaAs Quantum Cascade Laser due to the Deep Mesa Structure)

  • 한일기;송진동;이정일
    • 한국진공학회지
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    • 제17권6호
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    • pp.523-527
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    • 2008
  • GaAs/AlGaAs 물질계를 기반으로 한 양자폭포레이저를 제작하였다. 양자폭포레이저는 활성층의 위까지만 식각된 shallow mesa 구조와 활성층까지 식각된 deep mesa 구조로 제작되었다. shallow mesa 구조의 경우 문턱전류 밀도가 $26-32\;kA/cm^2$이었지만 deep mesa 구조의 경우 문턱전류 밀도는 $13\;kA/cm^2$로 대단히 감소되었다. Deep mesa 구조에서의 문턱전류 감소는 측면 방향으로의 전류 손실이 감소되었기 때문으로 설명되었다.

합주파에 의한 청색레이저 발생 (Blue Laser Generated by Sum Frequency)

  • 이영우
    • 한국정보통신학회논문지
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    • 제10권2호
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    • pp.224-227
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    • 2006
  • 809nm의 고출력 반도체 레이저(500mV의 출력광과 LD(Laser Diode) 여기 Nd:YVO4레이저의 파장 1064nm를 공진기 내부에서 비선형 광학 소자 KTP(Potassium titanyl posphate : KTPiOPO4)를 사용하여 합주파 발생 파장인 459nm의 청색레이저를 얻었다. 제2의 위상 정합 정합조건(${\psi}=90^{\circ},\;{\theta}=90^{\circ}$)에서 반도체 레이저의 입력광 세기가400mW일 때 청색레이저의 최대 출력 0.95mW를 얻었으며, 청색레이저의 발진문턱입력 세기는 120mW이었다.

Fatigue Crack Localization Using Laser Nonlinear Wave Modulation Spectroscopy (LNWMS)

  • Liu, Peipei;Sohn, Hoon;Kundu, Tribikram
    • 비파괴검사학회지
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    • 제34권6호
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    • pp.419-427
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    • 2014
  • Nonlinear features of ultrasonic waves are more sensitive to the presence of a fatigue crack than their linear counterparts are. For this reason, the use of nonlinear ultrasonic techniques to detect a fatigue crack at its early stage has been widely investigated. Of the different proposed techniques, laser nonlinear wave modulation spectroscopy (LNWMS) is unique because a pulse laser is used to exert a single broadband input and a noncontact measurement can be performed. Broadband excitation causes a nonlinear source to exhibit modulation at multiple spectral peaks owing to interactions among various input frequency components. A feature called maximum sideband peak count difference (MSPCD), which is extracted from the spectral plot, measures the degree of crack-induced material nonlinearity. First, the ratios of spectral peaks whose amplitudes are above a moving threshold to the total number of peaks are computed for spectral signals obtained from the pristine and the current state of a target structure. Then, the difference of these ratios are computed as a function of the moving threshold. Finally, the MSPCD is defined as the maximum difference between these ratios. The basic premise is that the MSPCD will increase as the nonlinearity of the material increases. This technique has been used successfully for localizing fatigue cracks in metallic plates.

Developing an interface strength technique using the laser shock method

  • James A. Smith;Bradley C. Benefiel;Clark L. Scott
    • Nuclear Engineering and Technology
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    • 제55권2호
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    • pp.432-442
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    • 2023
  • Characterizing the behavior of nuclear reactor plate fuels is vital to the progression of advanced fuel systems. The states of pre- and post-irradiation plates need to be determined effectively and efficiently prior to and following irradiation. Due to the hostile post-irradiation environment, characterization must be completed remotely. Laser-based characterization techniques enable the ability to make robust measurements inside a hot-cell environment. The Laser Shock (LS) technique generates high energy shockwaves that propagate through the plate and mechanically characterizes cladding-cladding interfaces. During an irradiation campaign, two Idaho National Laboratory (INL) fabricated MP-1 plates had a fuel breach in the cladding-cladding interface and trace amounts of fission products were released. The objective of this report is to characterize the cladding-cladding interface strengths in three plates fabricated using different fabrication processes. The goal is to assess the risk in irradiating future developmental and production fuel plates. Prior LS testing has shown weaker and more variability in bond strengths within INL MP-1 reference plates than in commercially produced vendor plates. Three fuel plates fabricated with different fabrication processes will be used to bound the bond strength threshold for plate irradiation insertion and assess the confidence of this threshold value.

피코초 레이저를 이용한 회절 격자 금형 개발 (Practical application of picosecond laser micro-machining to the direct fabrication of a diffraction grating mold)

  • 노지환;이제훈;손현기;서정;신동식
    • 한국레이저가공학회:학술대회논문집
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    • 한국레이저가공학회 2006년도 춘계학술발표대회 논문집
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    • pp.97-100
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    • 2006
  • Picosecond (ps) laser micro-machining has emerged as an attractive method of fabricating high-precision microstructures, especially in metals. In this paper, a metallic mold for diffraction gratings is fabricated with a mode-locked 12 ps $Nd:YVO_4$ laser. Laser pulses with a wavelength of 355nm are irradiated on the surface of NOK 80, a mold material, to generate line patterns. In order to minimize the line width, laser power is set just above the ablation threshold of NOK 80. Results show that the spectrum from the fabricated mold is good enough for some industrial application.

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레이저 국소증착에 의한 탄소 미세 구조물 제조 및 분광분석 (Fabrication of micro carbon structures using laser-induced chemical vapor deposition and Raman spectroscopic analysis)

  • 한성일;김진범;;정성호
    • 한국레이저가공학회지
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    • 제5권2호
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    • pp.17-22
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    • 2002
  • Characteristics of micro carbon structures fabricated with laser-induced chemical vapor deposition (LCVD) are investigated. An argon ion laser (λ=514.5nm) and ethylene gas were utilized as the energy source and precursor, respectively. The laser beam was focused onto a graphite substrate to produce carbon deposit through thermal decomposition of the precursor. Average growth rate of a carbon rod increased for increasing laser power and pressure. Micro carbon rods with good surface quality were obtained at near the threshold condition. Micro carbon rods with aspect ratio of about 100 and micro tubular structures were fabricated to demonstrate the possible application of this method to the fabrication of three-dimensional microstructures. Laser Raman spectroscopic analysis of the micro carbon structures revealed that the carbon rods are consisting of amorphous carbon.

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