• 제목/요약/키워드: Photonic crystal fibers

검색결과 28건 처리시간 0.041초

모세관 적층 방법에 의한 광자결정 광섬유의 제작 (Fabrication of Photonic Crystal Fiber using a Capillary Layer Method)

  • 조형수;정해양;김길환;고동연;이상배
    • 한국광학회지
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    • 제18권1호
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    • pp.14-18
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    • 2007
  • 실리카 코어 주변에 주기적인 공기층을 가지는 광자결정 광섬유는 넓은 파장 영역을 통한 단일모드의 구현 또는 1옥타브 이상의 광대역 연속광 발생과 같은 기존의 광섬유로는 불가능한 독특한 특성을 갖도록 유연하게 설계할 수 있다. 광자결정 광섬유의 설계에 사용되는 변수로는 공기층의 직경과 간격이 있으며 이러한 변수의 조절을 위한 공정을 도입하여 넓은 파장영역을 통한 단일모드 구현과 높은 비선형 특성을 가지는 광자결정 광섬유를 각각 제작 하였고 수치적 계산과 실험을 통해 그 특성을 살펴보았다.

Design of nonlinear photonic crystal fibers with ultra-flattened zero dispersion for supercontinuum generation

  • Kumar, Pranaw;Fiaboe, Kokou Firmin;Roy, Jibendu Sekhar
    • ETRI Journal
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    • 제42권2호
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    • pp.282-291
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    • 2020
  • The study reports on the design and performance of two air-filled and two partial ethanol-filled photonic crystal fiber (PCF) structures with a tetra core for supercontinuum generation. The PCFs are nonlinear with ultra-flattened zero dispersion. Holes with smaller areas are used to create a tetra-core PCF structure. Ethanol is filled in the holes of smaller area while the larger holes of cladding region are airfilled. Optical properties including dispersion, effective mode area, confinement loss, normalized frequency, and nonlinear coefficient of the designed PCF structures are investigated via full vector finite difference time domain (FDTD) method. A PCF structure with lead silicate as wafer exhibits significantly better results than a PCF structure with silica as wafer. However, both structures report dispersion at a telecommunication wavelength corresponding to 1.55 ㎛. Furthermore, the PCF structure with lead silicate as wafer exhibits a very high nonlinear coefficient corresponding to 1375 W-1 km-1 at the same wavelength. This scheme can be used for optical communication systems and in optical devices by exploiting the principle of nonlinearity.

액정을 주입한 광자결절광섬유의 온도변화에 따른 파장 스위칭 (Wavelength Switching with Temperature in Liquid-Crystal-infiltrated Phtonic Crystal Fibers)

  • 전민용;김종현
    • 한국광학회지
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    • 제18권2호
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    • pp.100-104
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    • 2007
  • 본 연구에서는 클래딩 영역에 주기적인 공기층이 있는 광자 결정 광섬유에 액정을 주입하고, 온도를 변화시켜 주면서 빛의 투과 스펙트럼의 변화를 측정하였다. 액정을 주입한 광섬유는 특정 온도에서 특정 파장에 대해 여러 가지 투과특성을 얻어 낼 수 있었다. 광섬유에 가해주는 온도에 따라서 투과하는 광 신호를 약 $10\sim15dB$ 정도 최소화 할 수 있었는데, 이를 이용하면 특정 파장 대역에서 광 신호를 소광시킬 수 있는 광 스위칭 소자에 응용 가능할 것이다.

펨토초 펄스와 광결정 광섬유를 이용한 초 연속스펙트럼의 발생 (Supercontinuum Generation with Femtosecond Pulses and Photonic Crystal Fibers)

  • 최형규;김소은;기철식;성재희;유태준;고도경;이종민
    • 한국광학회지
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    • 제18권5호
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    • pp.345-350
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    • 2007
  • 광결정 광섬유에서 생성되는 초 연속스펙트럼의 특성을 일반화된 비선형 슈뢰딩거 방정식과 split step 퓨리에 방법을 이용하여 전산모사 하였다. 그 결과를 바탕으로 200 fs 펄스폭을 갖는 Ti:sapphire 레이저와 광결정 광섬유를 이용하여 650nm부터 900nm에 이르는 파장영역에서 ${\pm}4dB$ 이하의 평탄도를 가지는 초 연속스펙트럼을 실험적으로 생성하였다.

높은 복굴절율을 갖는 테라헤츠용 광결정 섬유 (Highly birefringent terahertz plastic photonic crystal fibers)

  • 조민수;박홍규;김정회;한해욱
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2006년도 하계종합학술대회
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    • pp.185-186
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    • 2006
  • Guided-wave propagation of sub-ps terahertz (THz) pulses in a highly birefringent plastic photonic crystal fiber has been experimentally demonstrated. The fabricated fibers have exhibited an extremely high birefringence of ${\sim}0.021$ at 0.3 THz.

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Guiding Properties of Square-lattice Photonic Crystal Fibers

  • Im Jooeun;Kim Jinchae;Paek Un-Chul;Lee Byeong Ha
    • Journal of the Optical Society of Korea
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    • 제9권4호
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    • pp.140-144
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    • 2005
  • In this paper we have investigated the guiding properties of photonic crystal fibers (PCFs) with a square-lattice of air-holes in the cladding. We have shown numerical results of PCFs with various air hole sizes and hole-to-hole spacings over a wide wavelength range. The group velocity dispersion, effective area and effective refractive index of PCF have been calculated numerically. The waveguide dispersion has greatly affected the group velocity dispersion when hole-to-hole spacing is about $1{\mu}m$. The effective area is quite flat over the wide spectral range whether the hole-to-hole spacing is large or ratio of diameter to pitch is large. From the field distribution, we found that the field is tightly confined within the core region of PCF when the pitch is $3{\mu}m$ and the air-filling fraction is 0.9.

Simulation of the Structural Parameters of Anti-resonant Hollow-core Photonic Crystal Fibers

  • Li, Qing;Feng, Yujun;Sun, Yinhong;Chang, Zhe;Wang, Yanshan;Peng, Wanjing;Ma, Yi;Tang, Chun
    • Current Optics and Photonics
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    • 제6권2호
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    • pp.143-150
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    • 2022
  • Anti-resonant hollow-core photonic crystal fiber (AR-HCF) has unique advantages, such as low nonlinearity and high damage threshold, which make it a promising candidate for high-power laser delivery at distances of tens of meters. However, due to the special structure, optical properties such as mode-field profile and bending loss of hollow-core fibers are different from those of solid-core fibers. These differences have limited the widespread use of AR-HCF in practice. In this paper we conduct numerical analysis of AR-HCFs with different structural parameters, to analyze their influences on an AR-HCF's optical properties. The simulation results show that with a 23-㎛ air-core diameter, the fundamental mode profile of an AR-HCF can well match that of the widely used Nufern's 20/400 fiber, for nearly-single-mode power delivery applications. Moreover, with the ratio of cladding capillary diameter to air-core diameter ranging from 0.6 to 0.7, the AR-HCF shows excellent optical characteristics, including low bending sensitivity while maintaining single-mode transmission at the same time. We believe these results lay the foundation for the application of AR-HCFs in the power delivery of high power fiber laser systems.

Highly Birefringent and Dispersion Compensating Photonic Crystal Fiber Based on Double Line Defect Core

  • Lee, Yong Soo;Lee, Chung Ghiu;Jung, Yongmin;Oh, Myoung-kyu;Kim, Soeun
    • Journal of the Optical Society of Korea
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    • 제20권5호
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    • pp.567-574
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    • 2016
  • We propose a highly birefringent and dispersion compensating photonic crystal fiber based on a double line defect core. Using a finite element method (FEM) with a perfectly matched layer (PML), it is demonstrated that it is possible to obtain broadband large negative dispersion of about -400 to -427 ps/(nm.km) covering all optical communication bands (from O to U band) and to achieve the dispersion coefficient of -425 ps/(nm.km) at 1.55μm. In addition, the highest birefringence of the proposed PCF at 1.55 μm is 1.92 × 10-2 and the value of birefringence from the wavelength of 1.26 to 1.8 μm (covering O to U bands) is about 1.8 × 10-2 to 1.92 × 10-2. It is confirmed that from the simulation results, the confinement loss of the proposed PCF is always less than 10-3 dB/km at 1.55 μm with seven fiber rings of air holes in the cladding.