• 제목/요약/키워드: Dual wavelength

검색결과 127건 처리시간 0.023초

Widely Tunable 1.55-${\mu}m$ Detuned Dual-Mode Laser Diode for Compact Continuous-Wave THz Emitter

  • Kim, Nam-Je;Leem, Young-Ahn;Ko, Hyun-Sung;Jeon, Min-Yong;Lee, Chul-Wook;Han, Sang-Pil;Lee, Dong-Hun;Park, Kyung-Hyun
    • ETRI Journal
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    • 제33권5호
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    • pp.810-813
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    • 2011
  • We report the use of a widely tunable detuned dual-mode laser diode (DML) as a compact and portable continuous-wave THz emitter. The wavelength difference between the two lasing modes of this DML can be tuned from 2.4 nm to 9.3 nm by using integrated microheaters. The power difference between these modes is less than 1 dB, and the side-mode suppression ratio is greater than 30 dB over the entire tuning range.

High Repetition Wavelength-locked 878.6 nm LD Dual-end-pumped Nd:YVO4 1064 nm Laser

  • Li, Yue;Yu, Yong-Ji;Wang, Yu-Heng;Liu, Hang;Liu, He-Yan;Jin, Guang-Yong
    • Current Optics and Photonics
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    • 제2권6호
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    • pp.582-588
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    • 2018
  • A $Nd:YVO_4$ laser dual-end-pumped by a wavelength-locked 878.6 nm laser diode is presented. At the repetition rate of 500 KHz, the absorbed pump power of 58 W, an output power of 26.1 W at 1064 nm is obtained, corresponding to an optical-optical efficiency of 45%. The pulse width is 44.2 ns. Meanwhile, the effects of traditional 808 nm pumping and 878.6 nm dual-end-pumping on the output laser beam quality and pulse width are compared and analyzed in an experiment.

이중 파장 보정방법 기반 다이나믹 분광타원편광계의 안정도 최적화 (Long-term Stability Optimization of Dynamic Spectroscopic Ellipsometery based on Dual-wavelength Calibration)

  • 최인호;헤리저데헌거흐 사이드;최석현;황국현;심준보;김대석
    • 반도체디스플레이기술학회지
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    • 제20권3호
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    • pp.178-183
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    • 2021
  • This paper describes a dynamic spectroscopic ellipsometry based on dual-wavelength calibration. DSE provides ellipsometric parameters at rates above 20 Hz, but the interferometer's sensitivity to temperature makes it difficult for that proposed system to maintain stable 𝜟k over long periods of time. To solve this problem, we set up an additional path in the DSE to perform simulations of the polarization phase calibration method using dual wavelengths. Through simulation, we were able to eliminate most of the polarization phase error and maintain a stable 𝜟k in the long-term stability experiment for 10 hours. This is the result that the 𝜟k stability of the proposed system is improved tens of times compared to the existing system.

DBR 다공성 실리콘과 Host 다공성 실리콘으로 이루어진 이중 다공성 실리콘의 제조와 광학적 특성 (Preparation and Optical Characterization of DBR/Host Dual Porous Silicon Containing DBR and Host Structures)

  • 최태은;양진석;엄성용;진성훈;조보민;조성동;손홍래
    • 통합자연과학논문집
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    • 제3권2호
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    • pp.78-83
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    • 2010
  • DBR/Host dual porous silicons containing DBR and host structure were prepared and their optical properties were characterized using Ocean Optics spectrometer. In this dual porous silicon, single porous silicon layer was used as host layer for possible biomolecule and drug materials and DBR porous silicon layer was used for signal transduction due to the recognition of molecules. Optical reflection spectrum of dual porous silicon displayed only DBR reflection but Fabry-Perot fringe pattern. DBR reflection band of dual porous silicon shifted to the shorter wavelength as the etching time of host layer increased. Cross-sectional FE-SEM image of dual porous silicon displayed a thickness of about 20 micrometer for DBR porous silicon layer. Developed etching technology could be useful to prepare DBR porous silicon which exhibited specific reflection resonance at the required wavelength and to provide an label-free biosensors and drug delivery materials.

이중 모드 Inductor Loaded 패치 안테나의 방사 특성 (Radiation Characteristics of a Dual Mode Inductor Loaded Patch Antenna)

  • 곽은혁;윤영민;김부균
    • 대한전자공학회논문지TC
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    • 제48권7호
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    • pp.28-34
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    • 2011
  • 영차 공진과 반파장 공진을 이용한 이중 모드 Inductor loaded 패치 안테나의 방사 특성을 연구하였다. 반파장 공진 모드에서 수평방향으로의 방사 이득을 최소화시키는 동시에 전방 방사 이득을 향상시켜 영차 공진 모드 방사 패턴과의 격리도를 향상시켰다. 이중 모드 inductor loaded 패치 안테나 기판의 유전상수가 작을수록, 안테나의 동작 주파수 대역이 높을수록 두 모드 간의 공진 주파수 간격이 증가함을 확인하였다.

Stacked GDI602(691)/GDI602(Rubrene) 형광층을 갖는 2-파장 유기발광소자 (Two Wavelength OLED with the Stacked GDI602(691)/GDI602(Rubrene) Fluorescent Layer)

  • 장지근;장호정;오명환;강정원;이준영;공명선;이영관;김희원
    • 한국재료학회지
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    • 제17권4호
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    • pp.198-202
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    • 2007
  • A new organic light emitting device(OLED) with two peak wavelength(blue and yellow) emission was fabricated using the selective doping in a single fluorescent host , and its electrical and optical characteristics were investigated. The fabricated device showed the luminance and efficiency of 1600 $Cd/m^2$ and 2.4 Im/W under the applied voltage of 10V, respectively. And its electroluminescent spectra had two peak wavelengths of 470nm and 560nm emitting bluish white light. The OLED with dual wavelength emission in this experiment is likely to be developed as a white OLED with simpler fluorescent system than conventional devices.

Infrared Dual-field-of-view Optical System Design with Electro-Optic/Laser Common-aperture Optics

  • Jeong, Dohwan;Lee, Jun Ho;Jeong, Ho;Ok, Chang Min;Park, Hyun-Woo
    • Current Optics and Photonics
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    • 제2권3호
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    • pp.241-249
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    • 2018
  • We report a midinfrared dual-field-of-view (FOV) optical system design for an airborne electro-optical targeting system. To achieve miniaturization and weight reduction of the system, it has a common aperture and fore-optics for three different spectral wavelength bands: an electro-optic (EO) band ($0.6{\sim}0.9{\mu}m$), a midinfrared (IR) band ($3.6{\sim}4.9{\mu}m$), and a designation laser wavelength ($1.064{\mu}m$). It is free to steer the line of sight by rotating the pitch and roll axes. Our design co-aligns the roll axis, and the line of sight therefore has a fixed entrance pupil position for all optical paths, unlike previously reported dual-FOV designs, which dispenses with image coregistration that is otherwise required. The fore-optics is essentially an achromatized, collimated beam reducer for all bands. Following the fore-optics, the bands are split into the dual-FOV IR path and the EO/laser path by a beam splitter. The subsequent dual-FOV IR path design consists of a zoom lens group and a relay lens group. The IR path with the fore-optics provides two stepwise FOVs ($1.50^{\circ}{\times}1.20^{\circ}$ to $5.40^{\circ}{\times}4.32^{\circ}$), due to the insertion of two Si lenses into the zoom lens group. The IR optical system is designed in such a way that the location and f-number (f/5.3) of the cold stop internally provided by the IR detector are maintained when changing the zoom. The design also satisfies several important performance requirements, including an on-axis modulation transfer function (MTF) that exceeds 10% at the Nyquist frequency of the IR detector pitch, with distortion of less than 2%.

2파장 펌프-프로브 기법을 이용한 질화규소 박막의 열물성 평가 (Thermal Property Evaluation of a Silicon Nitride Thin-Film Using the Dual-Wavelength Pump-Probe Technique)

  • 김윤영
    • 한국재료학회지
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    • 제29권9호
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    • pp.547-552
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    • 2019
  • In the present study, the thermal conductivity of a silicon nitride($Si_3N_4$) thin-film is evaluated using the dual-wavelength pump-probe technique. A 100-nm thick $Si_3N_4$ film is deposited on a silicon (100) wafer using the radio frequency plasma enhanced chemical vapor deposition technique and film structural characteristics are observed using the X-ray reflectivity technique. The film's thermal conductivity is measured using a pump-probe setup powered by a femtosecond laser system of which pump-beam wavelength is frequency-doubled using a beta barium borate crystal. A multilayer transient heat conduction equation is numerically solved to quantify the film property. A finite difference method based on the Crank-Nicolson scheme is employed for the computation so that the experimental data can be curve-fitted. Results show that the thermal conductivity value of the film is lower than that of its bulk status by an order of magnitude. This investigation offers an effective way to evaluate thermophysical properties of nanoscale ceramic and dielectric materials with high temporal and spatial resolutions.

Clinical Applications of a Non-ablative Fractional Dual Laser (1550/1927 nm)

  • Chang, Ho Sun;Lim, Nam Kyu
    • Medical Lasers
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    • 제9권2호
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    • pp.110-118
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    • 2020
  • The non-ablative fractional dual laser is equipped with two types of lasers, 1550 nm and 1927 nm in one device, and was approved by the United States Food and Drug Administration in 2013. The advantages of the non-ablative fractional laser (NAFL) include fewer side effects such as erythema, edema, post-laser pigmentation, and scab formation. Thus, the NAFL is preferred by both practitioners and consumers because it is convenient and safe for use. The 1550 nm erbium glass and 1927 nm thulium lasers are representative NAFLs that have been developed separately and are often used as a single-wavelength laser with proven clinical efficacy in various indications. The 1550 nm wavelength laser penetrates the dermis layer and the 1927 nm wavelength laser is effective for epidermal lesions. Therefore, targeting the skin layer can be easily achieved with both the 1550 and 1927 nm lasers, respectively, or in combination. Clinically, the 1550 nm laser is effective in the treatment of mild to moderate sagging and wrinkles, scars, and resurfacing. The 1927 nm laser improves skin texture and treats skin pigmentation and wounds. It can also be used for drug delivery. The selection and utilization rate of NAFL has been increasing in recent times, due to changes in lifestyle patterns and the need for beauty treatments with fewer side effects and short downtime. In this study, we present a plan for safe and effective laser therapy through a review of literature. Clinical applications of the multifunctional NAFL are also described.